Molecular basis of RNA recombination in the 3′UTR of chikungunya virus genome

Abstract Chikungunya virus (CHIKV) is a rapidly spreading re-emergent virus transmitted from mosquitoes to humans. The emergence of epidemic variants has been associated with changes in the viral genome, such as the duplication of repeated sequences in the 3′ untranslated region (UTR). Indeed, block...

Full description

Saved in:
Bibliographic Details
Published inNucleic acids research Vol. 52; no. 16; pp. 9727 - 9744
Main Authors Bardossy, Eugenia S, Volpe, Sebastiano, Suzuki, Yasutsugu, Merwaiss, Fernando, Faraj, Santiago, Montes, Mónica, Saleh, Maria-Carla, Alvarez, Diego E, Filomatori, Claudia V
Format Journal Article
LanguageEnglish
Published Oxford University Press 25.07.2024
Subjects
Online AccessGet full text

Cover

Loading…
Abstract Abstract Chikungunya virus (CHIKV) is a rapidly spreading re-emergent virus transmitted from mosquitoes to humans. The emergence of epidemic variants has been associated with changes in the viral genome, such as the duplication of repeated sequences in the 3′ untranslated region (UTR). Indeed, blocks of repeated sequences seemingly favor RNA recombination, providing the virus with a unique ability to continuously change the 3′UTR architecture during host switching. In this work, we provide experimental data on the molecular mechanism of RNA recombination and describe specific sequence and structural elements in the viral 3′UTR that favor template switching of the viral RNA-dependent RNA polymerase on the 3′UTR. Furthermore, we found that a 3′UTR deletion mutant that exhibits markedly delayed replication in mosquito cells and impaired transmission in vivo, recombines in reference laboratory strains of mosquitoes. Altogether, our data provide novel experimental evidence indicating that RNA recombination can act as a nucleic acid repair mechanism to add repeated sequences that are associated to high viral fitness in mosquito during chikungunya virus replication. Graphical Abstract Graphical Abstract
AbstractList Abstract Chikungunya virus (CHIKV) is a rapidly spreading re-emergent virus transmitted from mosquitoes to humans. The emergence of epidemic variants has been associated with changes in the viral genome, such as the duplication of repeated sequences in the 3′ untranslated region (UTR). Indeed, blocks of repeated sequences seemingly favor RNA recombination, providing the virus with a unique ability to continuously change the 3′UTR architecture during host switching. In this work, we provide experimental data on the molecular mechanism of RNA recombination and describe specific sequence and structural elements in the viral 3′UTR that favor template switching of the viral RNA-dependent RNA polymerase on the 3′UTR. Furthermore, we found that a 3′UTR deletion mutant that exhibits markedly delayed replication in mosquito cells and impaired transmission in vivo, recombines in reference laboratory strains of mosquitoes. Altogether, our data provide novel experimental evidence indicating that RNA recombination can act as a nucleic acid repair mechanism to add repeated sequences that are associated to high viral fitness in mosquito during chikungunya virus replication. Graphical Abstract Graphical Abstract
Chikungunya virus (CHIKV) is a rapidly spreading re-emergent virus transmitted from mosquitoes to humans. The emergence of epidemic variants has been associated with changes in the viral genome, such as the duplication of repeated sequences in the 3′ untranslated region (UTR). Indeed, blocks of repeated sequences seemingly favor RNA recombination, providing the virus with a unique ability to continuously change the 3′UTR architecture during host switching. In this work, we provide experimental data on the molecular mechanism of RNA recombination and describe specific sequence and structural elements in the viral 3′UTR that favor template switching of the viral RNA-dependent RNA polymerase on the 3′UTR. Furthermore, we found that a 3′UTR deletion mutant that exhibits markedly delayed replication in mosquito cells and impaired transmission in vivo , recombines in reference laboratory strains of mosquitoes. Altogether, our data provide novel experimental evidence indicating that RNA recombination can act as a nucleic acid repair mechanism to add repeated sequences that are associated to high viral fitness in mosquito during chikungunya virus replication. Graphical Abstract
Abstract Chikungunya virus (CHIKV) is a rapidly spreading re-emergent virus transmitted from mosquitoes to humans. The emergence of epidemic variants has been associated with changes in the viral genome, such as the duplication of repeated sequences in the 3′ untranslated region (UTR). Indeed, blocks of repeated sequences seemingly favor RNA recombination, providing the virus with a unique ability to continuously change the 3′UTR architecture during host switching. In this work, we provide experimental data on the molecular mechanism of RNA recombination and describe specific sequence and structural elements in the viral 3′UTR that favor template switching of the viral RNA-dependent RNA polymerase on the 3′UTR. Furthermore, we found that a 3′UTR deletion mutant that exhibits markedly delayed replication in mosquito cells and impaired transmission in vivo, recombines in reference laboratory strains of mosquitoes. Altogether, our data provide novel experimental evidence indicating that RNA recombination can act as a nucleic acid repair mechanism to add repeated sequences that are associated to high viral fitness in mosquito during chikungunya virus replication.
Author Filomatori, Claudia V
Bardossy, Eugenia S
Saleh, Maria-Carla
Alvarez, Diego E
Suzuki, Yasutsugu
Volpe, Sebastiano
Merwaiss, Fernando
Montes, Mónica
Faraj, Santiago
Author_xml – sequence: 1
  givenname: Eugenia S
  surname: Bardossy
  fullname: Bardossy, Eugenia S
– sequence: 2
  givenname: Sebastiano
  surname: Volpe
  fullname: Volpe, Sebastiano
– sequence: 3
  givenname: Yasutsugu
  surname: Suzuki
  fullname: Suzuki, Yasutsugu
– sequence: 4
  givenname: Fernando
  surname: Merwaiss
  fullname: Merwaiss, Fernando
– sequence: 5
  givenname: Santiago
  orcidid: 0000-0001-6608-4700
  surname: Faraj
  fullname: Faraj, Santiago
– sequence: 6
  givenname: Mónica
  surname: Montes
  fullname: Montes, Mónica
– sequence: 7
  givenname: Maria-Carla
  surname: Saleh
  fullname: Saleh, Maria-Carla
– sequence: 8
  givenname: Diego E
  surname: Alvarez
  fullname: Alvarez, Diego E
  email: dalvarez@iibintech.com.ar
– sequence: 9
  givenname: Claudia V
  orcidid: 0000-0002-0728-5227
  surname: Filomatori
  fullname: Filomatori, Claudia V
  email: cfilomatori@iibintech.com.ar
BookMark eNp9kLtOwzAUQC1URB8w8QOeWFCoHT8ST6iqeElApaqdI8dxUtPEruykUje-iU_iS2jVComF6Q733KOrMwQ966wG4BqjO4wEGVvpx9Vaas7QGRhgwuOICh73wAARxCKMaNoHwxA-EMIUM3oB-kQghhkXAzB7c7VWXS09zGUwAboSzt8n0GvlmtxY2RpnobGwXWlIvj-_lov5gVErs-5s1dmdhFvjuwArbV2jL8F5Keugr05zBJaPD4vpc_Q6e3qZTl4jFVPWRkUcJwSXMc_3ryikUqEl1VQoxiWhZcISQQiLkUxYXKRSokKIQjHGE8xxwjgZgfujd9PljS6Utq2XdbbxppF-lzlpsr8ba1ZZ5bYZxiTFhBwMt0eD8i4Er8vfY4yyQ9hsHzY7hd3TN0fadZt_wR9_IXsF
Cites_doi 10.1099/0022-1317-67-4-693
10.1371/journal.ppat.1004604
10.3201/eid2008.140268
10.1128/jvi.71.5.3799-3810.1997
10.1128/JVI.00652-19
10.1128/JVI.00816-17
10.3389/fmicb.2022.870759
10.3390/v16060861
10.1128/JVI.02620-14
10.1128/JVI.01813-19
10.1128/JVI.05591-11
10.1371/journal.ppat.1003591
10.1016/j.meegid.2014.12.022
10.1016/j.jtbi.2015.03.028
10.1371/journal.ppat.0030201
10.1371/journal.pntd.0002921
10.1371/journal.ppat.1007707
10.1073/pnas.85.16.5997
10.1371/journal.ppat.1007706
10.1371/journal.pntd.0004402
10.1038/s41467-021-22341-7
10.1016/j.aogh.2015.02.006
10.1038/nrmicro2614
10.1146/annurev.micro.51.1.151
10.1371/journal.ppat.1011352
10.1371/journal.ppat.1009110
10.1128/JVI.02921-15
10.1128/JVI.01579-18
10.1371/journal.ppat.1003312
10.1186/s13073-021-00985-w
10.1016/j.molcel.2021.10.003
10.1093/nar/gks396
10.3390/v13040535
10.1371/journal.ppat.1001156
10.1093/ve/vey012
10.1016/j.chom.2017.08.006
10.3390/v10060320
10.1128/JVI.01956-20
10.1006/jmbi.1994.0050
10.1074/jbc.M114.592303
10.1128/JVI.00701-20
10.1016/j.chom.2020.04.003
10.3201/eid2702.203173
10.1038/s41586-020-2169-0
10.1128/mBio.02738-21
10.1073/pnas.1810229115
10.1080/22221751.2021.1906754
10.1128/JVI.01270-13
10.3390/v11090859
10.1093/jn/127.5.958S
10.1006/viro.1997.8907
10.1093/emboj/18.20.5653
10.1038/srep36317
10.1128/JVI.00643-17
ContentType Journal Article
Copyright The Author(s) 2024. Published by Oxford University Press on behalf of Nucleic Acids Research. 2024
Copyright_xml – notice: The Author(s) 2024. Published by Oxford University Press on behalf of Nucleic Acids Research. 2024
DBID TOX
AAYXX
CITATION
5PM
DOI 10.1093/nar/gkae650
DatabaseName OUP_牛津大学出版社OA刊
CrossRef
PubMed Central (Full Participant titles)
DatabaseTitle CrossRef
DatabaseTitleList

CrossRef
Database_xml – sequence: 1
  dbid: TOX
  name: Oxford Academic Journals (Open Access)
  url: https://academic.oup.com/journals/
  sourceTypes: Publisher
DeliveryMethod fulltext_linktorsrc
Discipline Anatomy & Physiology
Chemistry
EISSN 1362-4962
EndPage 9744
ExternalDocumentID 10_1093_nar_gkae650
10.1093/nar/gkae650
GrantInformation_xml – fundername: ;
– fundername: ;
  grantid: PICT-2018-00561/PICT-2021-00067
GroupedDBID ---
-DZ
-~X
.55
.GJ
.I3
0R~
123
18M
1TH
29N
2WC
3O-
4.4
482
53G
5VS
5WA
6.Y
70E
85S
A8Z
AAFWJ
AAHBH
AAMVS
AAOGV
AAPPN
AAPXW
AAUQX
AAVAP
AAWDT
AAYJJ
ABPTD
ABQLI
ABQTQ
ABSAR
ABSMQ
ABXVV
ACFRR
ACGFO
ACGFS
ACIPB
ACIWK
ACMRT
ACNCT
ACPQN
ACPRK
ACUTJ
ACZBC
ADBBV
ADHZD
AEGXH
AEHUL
AEKPW
AENEX
AENZO
AFFNX
AFRAH
AFSHK
AFULF
AFYAG
AGKRT
AGMDO
AHMBA
AIAGR
ALMA_UNASSIGNED_HOLDINGS
ALUQC
ANFBD
AOIJS
AQDSO
ASAOO
ASPBG
ATDFG
ATTQO
AVWKF
AZFZN
BAWUL
BAYMD
BCNDV
BEYMZ
BTTYL
C1A
CAG
CIDKT
COF
CS3
CXTWN
CZ4
D0S
DFGAJ
DIK
DU5
D~K
E3Z
EBD
EBS
EJD
ELUNK
EMOBN
ESTFP
F20
F5P
FEDTE
GROUPED_DOAJ
GX1
H13
HH5
HVGLF
HYE
HZ~
H~9
IH2
KAQDR
KQ8
KSI
M49
MBTAY
MVM
M~E
NTWIH
NU-
OAWHX
OBC
OBS
OEB
OES
OJQWA
OVD
O~Y
P2P
PB-
PEELM
PQQKQ
QBD
R44
RD5
RNI
RNS
ROL
ROX
ROZ
RPM
RXO
RZF
RZO
SJN
SV3
TCN
TEORI
TN5
TOX
TR2
UHB
WG7
WOQ
X7H
X7M
XSB
XSW
YSK
ZKX
ZXP
~91
~D7
~KM
AAYXX
AFPKN
CITATION
5PM
ID FETCH-LOGICAL-c245t-d22731f26b390c0c89ea4e49c56a34f757933520a752d8aa0d99dc55671617563
IEDL.DBID RPM
ISSN 0305-1048
IngestDate Wed Sep 11 06:03:59 EDT 2024
Wed Sep 11 13:53:33 EDT 2024
Mon Oct 07 18:04:50 EDT 2024
IsDoiOpenAccess true
IsOpenAccess true
IsPeerReviewed true
IsScholarly true
Issue 16
Language English
License This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
LinkModel DirectLink
MergedId FETCHMERGED-LOGICAL-c245t-d22731f26b390c0c89ea4e49c56a34f757933520a752d8aa0d99dc55671617563
Notes The first two authors should be regarded as Joint First Authors.
ORCID 0000-0001-6608-4700
0000-0002-0728-5227
OpenAccessLink https://www.ncbi.nlm.nih.gov/pmc/articles/PMC11381336/
PMID 39051569
PageCount 18
ParticipantIDs pubmedcentral_primary_oai_pubmedcentral_nih_gov_11381336
crossref_primary_10_1093_nar_gkae650
oup_primary_10_1093_nar_gkae650
PublicationCentury 2000
PublicationDate 2024-07-25
PublicationDateYYYYMMDD 2024-07-25
PublicationDate_xml – month: 07
  year: 2024
  text: 2024-07-25
  day: 25
PublicationDecade 2020
PublicationTitle Nucleic acids research
PublicationYear 2024
Publisher Oxford University Press
Publisher_xml – name: Oxford University Press
References De Aguiar (2024090903584249300_B17) 2015; 374
Fredericks (2024090903584249300_B27) 2014; 80
Pfeffer (2024090903584249300_B33) 1998; 240
Yi (2024090903584249300_B19) 2021; 13
Filomatori (2024090903584249300_B35) 2019; 15
Carpenter (2024090903584249300_B48) 1995; 245
Aguado (2024090903584249300_B15) 2018; 115
Tsetsarkin (2024090903584249300_B30) 2007; 3
Nagy (2024090903584249300_B45) 1997; 71
Merwaiss (2024090903584249300_B38) 2021; 95
Pérez-Losada (2024090903584249300_B4) 2015; 30
Bali (2024090903584249300_B20) 2021; 13
Levi (2024090903584249300_B56) 2021; 17
Pal (2024090903584249300_B41) 2013; 9
Yeh (2024090903584249300_B53) 2020; 27
Bardossy (2024090903584249300_B42) 2023; 19
Hahn (2024090903584249300_B7) 1988; 85
Genoyer (2024090903584249300_B24) 2019; 93
Poirier (2024090903584249300_B50) 2015; 90
Lam (2024090903584249300_B9) 2020; 583
Shi (2024090903584249300_B11) 2013; 87
Bond (2024090903584249300_B39) 2012; 40
Yu (2024090903584249300_B21) 2020; 94
Domingo (2024090903584249300_B3) 1997; 51
Chen (2024090903584249300_B34) 2013; 9
da Silva Couto (2024090903584249300_B46) 2022; 14
Simon-Loriere (2024090903584249300_B1) 2011; 9
Madden (2024090903584249300_B40) 2020; 94
Minor (2024090903584249300_B14) 1986; 67
Xiao (2024090903584249300_B5) 2017; 22
Ang (2024090903584249300_B13) 2021; 10
Forrester (2024090903584249300_B8) 2012; 86
Joffret (2024090903584249300_B12) 2021; 27
Lanciotti (2024090903584249300_B29) 2014; 20
Prasanth (2024090903584249300_B52) 2015; 89
Janissen (2024090903584249300_B54) 2021; 81
Wang (2024090903584249300_B6) 2022; 13
Rezelj (2024090903584249300_B55) 2021; 12
Villordo (2024090903584249300_B36) 2015; 11
Nagy (2024090903584249300_B47) 1999; 18
Muslin (2024090903584249300_B22) 2019; 11
Korboukh (2024090903584249300_B49) 2014; 289
Jaag (2024090903584249300_B51) 2010; 6
Sun (2024090903584249300_B25) 2019; 15
Ander (2024090903584249300_B43) 2024; 16
Domingo (2024090903584249300_B2) 1997; 127
Chen (2024090903584249300_B32) 2021; 12
Mandary (2024090903584249300_B10) 2018; 10
Kempf (2024090903584249300_B16) 2019; 93
Hawman (2024090903584249300_B44) 2017; 91
Stapleford (2024090903584249300_B31) 2016; 10
Weaver (2024090903584249300_B28) 2014; 8
Morley (2024090903584249300_B37) 2018; 4
Thaikruea (2024090903584249300_B26) 1997; 28
Petterson (2024090903584249300_B18) 2016; 6
Mura (2024090903584249300_B23) 2017; 91
References_xml – volume: 67
  start-page: 693
  year: 1986
  ident: 2024090903584249300_B14
  article-title: Antigenic and molecular evolution of the vaccine strain of type 3 poliovirus during the period of excretion by a primary vaccinee
  publication-title: J. Gen. Virol.
  doi: 10.1099/0022-1317-67-4-693
  contributor:
    fullname: Minor
– volume: 11
  start-page: e1004604
  year: 2015
  ident: 2024090903584249300_B36
  article-title: Dengue virus RNA structure specialization facilitates host adaptation
  publication-title: PLoS Pathog.
  doi: 10.1371/journal.ppat.1004604
  contributor:
    fullname: Villordo
– volume: 20
  start-page: 1400
  year: 2014
  ident: 2024090903584249300_B29
  article-title: Transcontinental movement of Asian genotype chikungunya virus
  publication-title: Emerg. Infect. Dis.
  doi: 10.3201/eid2008.140268
  contributor:
    fullname: Lanciotti
– volume: 71
  start-page: 3799
  year: 1997
  ident: 2024090903584249300_B45
  article-title: Engineering of homologous recombination hotspots with AU-rich sequences in brome mosaic virus
  publication-title: J. Virol.
  doi: 10.1128/jvi.71.5.3799-3810.1997
  contributor:
    fullname: Nagy
– volume: 93
  start-page: e00652-19
  year: 2019
  ident: 2024090903584249300_B16
  article-title: Picornavirus RNA recombination counteracts error catastrophe
  publication-title: J. Virol.
  doi: 10.1128/JVI.00652-19
  contributor:
    fullname: Kempf
– volume: 91
  start-page: e00816-17
  year: 2017
  ident: 2024090903584249300_B44
  article-title: Mutations in the E2 glycoprotein and the 3' untranslated region enhance Chikungunya virus virulence in mice
  publication-title: J. Virol.
  doi: 10.1128/JVI.00816-17
  contributor:
    fullname: Hawman
– volume: 13
  start-page: 870759
  year: 2022
  ident: 2024090903584249300_B6
  article-title: Recombination in positive-strand RNA viruses
  publication-title: Front. Microbiol.
  doi: 10.3389/fmicb.2022.870759
  contributor:
    fullname: Wang
– volume: 16
  start-page: 861
  year: 2024
  ident: 2024090903584249300_B43
  article-title: A 44-nucleotide region in the Chikungunya virus 3′ UTR dictates viral fitness in disparate host cells
  publication-title: Viruses
  doi: 10.3390/v16060861
  contributor:
    fullname: Ander
– volume: 89
  start-page: 2750
  year: 2015
  ident: 2024090903584249300_B52
  article-title: The proteasomal Rpn11 metalloprotease suppresses tombusvirus RNA recombination and promotes viral replication via facilitating assembly of the viral replicase complex
  publication-title: J. Virol.
  doi: 10.1128/JVI.02620-14
  contributor:
    fullname: Prasanth
– volume: 94
  start-page: e01813-19
  year: 2020
  ident: 2024090903584249300_B21
  article-title: Phylogenetics, genomic recombination, and NSP2 polymorphic patterns of Porcine reproductive and Respiratory Syndrome virus in China and the United States in 2014-2018
  publication-title: J. Virol.
  doi: 10.1128/JVI.01813-19
  contributor:
    fullname: Yu
– volume: 86
  start-page: 2729
  year: 2012
  ident: 2024090903584249300_B8
  article-title: Genome-scale phylogeny of the alphavirus genus suggests a marine origin
  publication-title: J. Virol.
  doi: 10.1128/JVI.05591-11
  contributor:
    fullname: Forrester
– volume: 9
  start-page: e1003591
  year: 2013
  ident: 2024090903584249300_B34
  article-title: Chikungunya virus 3' untranslated region: adaptation to mosquitoes and a population bottleneck as major evolutionary forces
  publication-title: PLoS Pathog.
  doi: 10.1371/journal.ppat.1003591
  contributor:
    fullname: Chen
– volume: 30
  start-page: 296
  year: 2015
  ident: 2024090903584249300_B4
  article-title: Recombination in viruses: mechanisms, methods of study, and evolutionary consequences
  publication-title: Infect. Genet. Evol.
  doi: 10.1016/j.meegid.2014.12.022
  contributor:
    fullname: Pérez-Losada
– volume: 374
  start-page: 48
  year: 2015
  ident: 2024090903584249300_B17
  article-title: Error catastrophe in populations under similarity-essential recombination
  publication-title: J. Theor. Biol.
  doi: 10.1016/j.jtbi.2015.03.028
  contributor:
    fullname: De Aguiar
– volume: 3
  start-page: e201
  year: 2007
  ident: 2024090903584249300_B30
  article-title: A single mutation in chikungunya virus affects vector specificity and epidemic potential
  publication-title: PLoS Pathog.
  doi: 10.1371/journal.ppat.0030201
  contributor:
    fullname: Tsetsarkin
– volume: 8
  start-page: e2921
  year: 2014
  ident: 2024090903584249300_B28
  article-title: Arrival of chikungunya virus in the new world: prospects for spread and impact on public health
  publication-title: PLoS Negl Trop Dis
  doi: 10.1371/journal.pntd.0002921
  contributor:
    fullname: Weaver
– volume: 15
  start-page: e1007707
  year: 2019
  ident: 2024090903584249300_B25
  article-title: A specific sequence in the genome of respiratory syncytial virus regulates the generation of copy-back defective viral genomes
  publication-title: PLoS Pathog.
  doi: 10.1371/journal.ppat.1007707
  contributor:
    fullname: Sun
– volume: 85
  start-page: 5997
  year: 1988
  ident: 2024090903584249300_B7
  article-title: Western equine encephalitis virus is a recombinant virus
  publication-title: Proc. Natl. Acad. Sci. U.S.A.
  doi: 10.1073/pnas.85.16.5997
  contributor:
    fullname: Hahn
– volume: 15
  start-page: e1007706
  year: 2019
  ident: 2024090903584249300_B35
  article-title: RNA recombination at Chikungunya virus 3'UTR as an evolutionary mechanism that provides adaptability
  publication-title: PLoS Pathog.
  doi: 10.1371/journal.ppat.1007706
  contributor:
    fullname: Filomatori
– volume: 10
  start-page: e0004402
  year: 2016
  ident: 2024090903584249300_B31
  article-title: Whole-genome sequencing analysis from the Chikungunya Virus caribbean outbreak reveals novel evolutionary genomic elements
  publication-title: PLoS Negl. Trop. Dis.
  doi: 10.1371/journal.pntd.0004402
  contributor:
    fullname: Stapleford
– volume: 12
  start-page: 2290
  year: 2021
  ident: 2024090903584249300_B55
  article-title: Defective viral genomes as therapeutic interfering particles against flavivirus infection in mammalian and mosquito hosts
  publication-title: Nat. Commun.
  doi: 10.1038/s41467-021-22341-7
  contributor:
    fullname: Rezelj
– volume: 80
  start-page: 466
  year: 2014
  ident: 2024090903584249300_B27
  article-title: The burden of dengue and chikungunya worldwide: implications for the southern United States and California
  publication-title: Ann Glob Health
  doi: 10.1016/j.aogh.2015.02.006
  contributor:
    fullname: Fredericks
– volume: 9
  start-page: 617
  year: 2011
  ident: 2024090903584249300_B1
  article-title: Why do RNA viruses recombine?
  publication-title: Nat. Rev. Micro.
  doi: 10.1038/nrmicro2614
  contributor:
    fullname: Simon-Loriere
– volume: 51
  start-page: 151
  year: 1997
  ident: 2024090903584249300_B3
  article-title: RNA virus mutations and fitness for survival
  publication-title: Annu. Rev. Microbiol.
  doi: 10.1146/annurev.micro.51.1.151
  contributor:
    fullname: Domingo
– volume: 19
  start-page: e1011352
  year: 2023
  ident: 2024090903584249300_B42
  article-title: A conserved Y-shaped RNA structure in the 3'UTR of chikungunya virus genome as a host-specialized element that modulates viral replication and evolution
  publication-title: PLoS Pathog.
  doi: 10.1371/journal.ppat.1011352
  contributor:
    fullname: Bardossy
– volume: 17
  start-page: e1009110
  year: 2021
  ident: 2024090903584249300_B56
  article-title: Defective viral genomes from chikungunya virus are broad-spectrum antivirals and prevent virus dissemination in mosquitoes
  publication-title: PLoS Pathog.
  doi: 10.1371/journal.ppat.1009110
  contributor:
    fullname: Levi
– volume: 90
  start-page: 2446
  year: 2015
  ident: 2024090903584249300_B50
  article-title: Low-fidelity polymerases of alphaviruses recombine at higher rates to overproduce defective interfering particles
  publication-title: J. Virol.
  doi: 10.1128/JVI.02921-15
  contributor:
    fullname: Poirier
– volume: 93
  start-page: e01579-18
  year: 2019
  ident: 2024090903584249300_B24
  article-title: Defective viral genomes alter how Sendai Virus interacts with cellular trafficking machinery, leading to heterogeneity in the production of viral particles among infected cells
  publication-title: J. Virol.
  doi: 10.1128/JVI.01579-18
  contributor:
    fullname: Genoyer
– volume: 9
  start-page: e1003312
  year: 2013
  ident: 2024090903584249300_B41
  article-title: Development of a highly protective combination monoclonal antibody therapy against Chikungunya virus
  publication-title: PLoS Pathog.
  doi: 10.1371/journal.ppat.1003312
  contributor:
    fullname: Pal
– volume: 13
  start-page: 164
  year: 2021
  ident: 2024090903584249300_B19
  article-title: Comprehensive mapping of binding hot spots of SARS-CoV-2 RBD-specific neutralizing antibodies for tracking immune escape variants
  publication-title: Genome Med
  doi: 10.1186/s13073-021-00985-w
  contributor:
    fullname: Yi
– volume: 81
  start-page: 4467
  year: 2021
  ident: 2024090903584249300_B54
  article-title: Induced intra- and intermolecular template switching as a therapeutic mechanism against RNA viruses
  publication-title: Mol. Cell
  doi: 10.1016/j.molcel.2021.10.003
  contributor:
    fullname: Janissen
– volume: 40
  start-page: W209
  year: 2012
  ident: 2024090903584249300_B39
  article-title: RF-cloning.Org: an online tool for the design of restriction-free cloning projects
  publication-title: Nucleic Acids Res.
  doi: 10.1093/nar/gks396
  contributor:
    fullname: Bond
– volume: 13
  start-page: 535
  year: 2021
  ident: 2024090903584249300_B20
  article-title: Recombination events shape the genomic evolution of infectious Bronchitis virus in Europe
  publication-title: Viruses
  doi: 10.3390/v13040535
  contributor:
    fullname: Bali
– volume: 6
  start-page: e1001156
  year: 2010
  ident: 2024090903584249300_B51
  article-title: The combined effect of environmental and host factors on the emergence of viral RNA recombinants
  publication-title: PLoS Pathog.
  doi: 10.1371/journal.ppat.1001156
  contributor:
    fullname: Jaag
– volume: 4
  start-page: vey012
  year: 2018
  ident: 2024090903584249300_B37
  article-title: Chikungunya virus evolution following a large 3'UTR deletion results in host-specific molecular changes in protein-coding regions
  publication-title: Virus Evol.
  doi: 10.1093/ve/vey012
  contributor:
    fullname: Morley
– volume: 22
  start-page: 420
  year: 2017
  ident: 2024090903584249300_B5
  article-title: RNA recombination enhances adaptability and is required for virus spread and virulence
  publication-title: Cell Host Microbe
  doi: 10.1016/j.chom.2017.08.006
  contributor:
    fullname: Xiao
– volume: 10
  start-page: 320
  year: 2018
  ident: 2024090903584249300_B10
  article-title: Changes in the EV-A71 genome through recombination and spontaneous mutations: impact on virulence
  publication-title: Viruses
  doi: 10.3390/v10060320
  contributor:
    fullname: Mandary
– volume: 95
  start-page: e01956-20
  year: 2021
  ident: 2024090903584249300_B38
  article-title: Chikungunya virus replication rate determines the capacity of crossing tissue barriers in mosquitoes
  publication-title: J. Virol.
  doi: 10.1128/JVI.01956-20
  contributor:
    fullname: Merwaiss
– volume: 245
  start-page: 608
  year: 1995
  ident: 2024090903584249300_B48
  article-title: Involvement of a stem-loop structure in the location of junction sites in viral RNA recombination
  publication-title: J. Mol. Biol.
  doi: 10.1006/jmbi.1994.0050
  contributor:
    fullname: Carpenter
– volume: 289
  start-page: 29531
  year: 2014
  ident: 2024090903584249300_B49
  article-title: RNA virus population diversity, an optimum for maximal fitness and virulence
  publication-title: J. Biol. Chem.
  doi: 10.1074/jbc.M114.592303
  contributor:
    fullname: Korboukh
– volume: 94
  start-page: e00701-20
  year: 2020
  ident: 2024090903584249300_B40
  article-title: Using SHAPE-MaP to model RNA secondary structure and identify 3'UTR variation in Chikungunya Virus
  publication-title: J. Virol.
  doi: 10.1128/JVI.00701-20
  contributor:
    fullname: Madden
– volume: 27
  start-page: 736
  year: 2020
  ident: 2024090903584249300_B53
  article-title: Engineering the live-attenuated polio vaccine to prevent reversion to virulence
  publication-title: Cell Host Microbe
  doi: 10.1016/j.chom.2020.04.003
  contributor:
    fullname: Yeh
– volume: 27
  start-page: 620
  year: 2021
  ident: 2024090903584249300_B12
  article-title: Vaccine-derived polioviruses, Central African Republic, 2019
  publication-title: Emerg. Infect. Dis.
  doi: 10.3201/eid2702.203173
  contributor:
    fullname: Joffret
– volume: 28
  start-page: 359
  year: 1997
  ident: 2024090903584249300_B26
  article-title: Chikungunya in Thailand: a re-emerging disease?
  publication-title: Southeast Asian J. Trop. Med. Public Health
  contributor:
    fullname: Thaikruea
– volume: 583
  start-page: 282
  year: 2020
  ident: 2024090903584249300_B9
  article-title: Identifying SARS-CoV-2-related coronaviruses in Malayan pangolins
  publication-title: Nature
  doi: 10.1038/s41586-020-2169-0
  contributor:
    fullname: Lam
– volume: 12
  start-page: e0273821
  year: 2021
  ident: 2024090903584249300_B32
  article-title: Lineage divergence and vector-specific adaptation have driven Chikungunya virus onto multiple adaptive landscapes
  publication-title: mBio
  doi: 10.1128/mBio.02738-21
  contributor:
    fullname: Chen
– volume: 115
  start-page: E9211
  year: 2018
  ident: 2024090903584249300_B15
  article-title: Homologous recombination is an intrinsic defense against antiviral RNA interference
  publication-title: Proc. Natl. Acad. Sci. U.S.A.
  doi: 10.1073/pnas.1810229115
  contributor:
    fullname: Aguado
– volume: 10
  start-page: 713
  year: 2021
  ident: 2024090903584249300_B13
  article-title: Viral determinants that drive Enterovirus-A71 fitness and virulence
  publication-title: Emerg Microbes Infect
  doi: 10.1080/22221751.2021.1906754
  contributor:
    fullname: Ang
– volume: 87
  start-page: 10904
  year: 2013
  ident: 2024090903584249300_B11
  article-title: Recombination is associated with an outbreak of novel highly pathogenic porcine reproductive and respiratory syndrome viruses in China
  publication-title: J. Virol.
  doi: 10.1128/JVI.01270-13
  contributor:
    fullname: Shi
– volume: 11
  start-page: 859
  year: 2019
  ident: 2024090903584249300_B22
  article-title: Recombination in enteroviruses, a multi-step modular evolutionary process
  publication-title: Viruses
  doi: 10.3390/v11090859
  contributor:
    fullname: Muslin
– volume: 127
  start-page: 958S
  year: 1997
  ident: 2024090903584249300_B2
  article-title: Rapid evolution of viral RNA genomes
  publication-title: J. Nutr.
  doi: 10.1093/jn/127.5.958S
  contributor:
    fullname: Domingo
– volume: 240
  start-page: 100
  year: 1998
  ident: 2024090903584249300_B33
  article-title: The alphavirus 3'-nontranslated region: size heterogeneity and arrangement of repeated sequence elements
  publication-title: Virology
  doi: 10.1006/viro.1997.8907
  contributor:
    fullname: Pfeffer
– volume: 18
  start-page: 5653
  year: 1999
  ident: 2024090903584249300_B47
  article-title: RNA elements required for RNA recombination function as replication enhancers in vitro and in vivo in a plus-strand RNA virus
  publication-title: EMBO J.
  doi: 10.1093/emboj/18.20.5653
  contributor:
    fullname: Nagy
– volume: 6
  start-page: 36317
  year: 2016
  ident: 2024090903584249300_B18
  article-title: Experimental piscine alphavirus RNA recombination in vivo yields both viable virus and defective viral RNA
  publication-title: Sci. Rep.
  doi: 10.1038/srep36317
  contributor:
    fullname: Petterson
– volume: 14
  start-page: 2467
  year: 2022
  ident: 2024090903584249300_B46
  article-title: Is the intergenic region of
  publication-title: Viruses
  contributor:
    fullname: da Silva Couto
– volume: 91
  start-page: e00643-17
  year: 2017
  ident: 2024090903584249300_B23
  article-title: Nonencapsidated 5' Copy-back defective interfering genomes produced by recombinant measles viruses are recognized by RIG-I and LGP2 but not MDA5
  publication-title: J. Virol.
  doi: 10.1128/JVI.00643-17
  contributor:
    fullname: Mura
SSID ssj0014154
Score 2.5028148
Snippet Abstract Chikungunya virus (CHIKV) is a rapidly spreading re-emergent virus transmitted from mosquitoes to humans. The emergence of epidemic variants has been...
Abstract Chikungunya virus (CHIKV) is a rapidly spreading re-emergent virus transmitted from mosquitoes to humans. The emergence of epidemic variants has been...
Chikungunya virus (CHIKV) is a rapidly spreading re-emergent virus transmitted from mosquitoes to humans. The emergence of epidemic variants has been...
SourceID pubmedcentral
crossref
oup
SourceType Open Access Repository
Aggregation Database
Publisher
StartPage 9727
SubjectTerms Molecular Biology
Title Molecular basis of RNA recombination in the 3′UTR of chikungunya virus genome
URI https://pubmed.ncbi.nlm.nih.gov/PMC11381336
Volume 52
hasFullText 1
inHoldings 1
isFullTextHit
isPrint
link http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwnV09T8MwED0BA7AgPkX59IDYQtLYTpOxqkAIqYBQK3WrbMeGCGJQaZHY-E38JH4JZydBdGFgyZJLlFzOuffsu2eAk8jIiBtDA54aFTDNVZApGQWGcfwjKyki4xqc-9fJ5ZBdjfhoAZKmF8YX7StZnNmn8swWD7628qVUYVMnFt72e-025hlKk3ARFjFCG45erx1gSqpEo7zGJkvrrjyk7qEVk_D-UWiEJauwTJ02FXelzr9SUtXmNl8g-SvjXKzDWg0VSbd6pA1Y0HYTtroWaXL5Tk6JL970s-KbsNJrNm7bgpt-s-UtwRxVvJJnQ-6uu8Rx3xKJsP8WpLAEsR-hXx-fw8Gds1EPxSMO_Zl9F-StmMxeiRNwLfU2DC_OB73LoN43IVAx49MgjxGTtE2cSHxDFak004JplimeCMpMh-OYRNwViQ6P81SIKM-yXHGedBzZ4QndgSX7bPUuECU5DmmmJc8RauQKbfEmGZXIe9zvoAUnjevGL5U8xrha1qZjdPa4dnYLjtGtf1ukcy7_sXXy1_NnMCq8DHYTBXv_v3QfVmMEKW6uNuYHsDSdzPQhgoypPPLk_MhHFh4HN6Nv-cbV7w
link.rule.ids 230,315,730,783,787,867,888,1607,27936,27937,53804,53806
linkProvider National Library of Medicine
linkToHtml http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwnV1LT-MwEB6xRVq4rHjsii4vH9DeQtLYTpNjVVGVR7sr1ErcItuxIYK4qLQrceM37U_ilzDOA9HLHjhnEiUTj-f77JnPACeBkQE3hno8NspjmisvUTLwDOM4IyspAuManEfjaDhlFzf8Zg2iphemLNpXMj-1D8Wpze_K2srHQvlNnZj_Z9TvdDDPUBr5X2AdAzZgDUuvdw8wKVWyUaXKJovrvjwk774Vc__2XmgEJpvwlTp1Ku6KnT8kparRbbVE8kPOGWzBtxoskl71Utuwpu0O7PYsEuXimfwiZflmuS6-Axv95ui2Xfg9ag69JZil8icyM-R63COO_RZIhcu_QXJLEP0R-vrybzq5djbqLr_H4F_aZ0H-5vPlE3ESroX-DtPB2aQ_9OqTEzwVMr7wshBRSceEkcQvVIGKEy2YZonikaDMdDlGJSKvQHR5mMVCBFmSZIrzqOvoDo_oD2jZmdV7QJTkGNRMS54h2MgU2uJDEiqR-bgJoQ0njevSx0ogI602tmmKzk5rZ7fhGN36f4t4xeXvtk4Ae_UKjotSCLsZBz8_f-sxbAwno6v06nx8uQ-bIUIWt3Ib8gNoLeZLfYiQYyGPyvH1BlSH1zQ
linkToPdf http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwnV3JbtswEB2kCeDmUmRp0bRZeAh6UySLpCwdDSdGltoNDBvITSApMhFSMYaXArnlm_JJ_ZIOtQT2pYecNRKkEcl5j3x8BDgNjAy4MdTjsVEe01x5iZKBZxjHEVlJERi3wXkwjC4n7PqO39Wqynktq7RK5mf2d3Fm84dSWzktlN_oxPzbQa_dxjpDaeRPM-N_gC3stEHUMPV6BQELU2UdVTptsrjem4cE3rdi5t8_Co3gZBta1DlUcSd4XilM1Wa3dZnkSt3p78CnGjCSbvViu7Ch7R7sdy2S5eKZ_CClhLOcG9-Dj73m-LZ9-DVoDr4lWKnyOXkyZDTsEseAC6TD5R8huSWIAAn9-_I6GY9cjHrIH3EAWNpnQf7ks-WcOBvXQn-GSf9i3Lv06tMTPBUyvvCyEJFJ24SRxC9UgYoTLZhmieKRoMx0OPZMRF-B6PAwi4UIsiTJFOdRx1EeHtEvsGmfrP4KREmOHZtpyTMEHJnCWHxIQiWyHzcoHMBpk7p0WplkpNXiNk0x2Wmd7AM4wbT-PyJeS_lbrDPBXr-CbaM0w27awrf333oCrdvzfvrzanjzHbZDRC1u8jbkh7C5mC31EaKOhTwum9c_d6bYRw
openUrl ctx_ver=Z39.88-2004&ctx_enc=info%3Aofi%2Fenc%3AUTF-8&rfr_id=info%3Asid%2Fsummon.serialssolutions.com&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&rft.genre=article&rft.atitle=Molecular+basis+of+RNA+recombination+in+the+3%E2%80%B2UTR+of+chikungunya+virus+genome&rft.jtitle=Nucleic+acids+research&rft.au=Bardossy%2C+Eugenia+S&rft.au=Volpe%2C+Sebastiano&rft.au=Suzuki%2C+Yasutsugu&rft.au=Merwaiss%2C+Fernando&rft.date=2024-07-25&rft.pub=Oxford+University+Press&rft.issn=0305-1048&rft.eissn=1362-4962&rft.volume=52&rft.issue=16&rft.spage=9727&rft.epage=9744&rft_id=info:doi/10.1093%2Fnar%2Fgkae650&rft_id=info%3Apmid%2F39051569&rft.externalDBID=PMC11381336
thumbnail_l http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/lc.gif&issn=0305-1048&client=summon
thumbnail_m http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/mc.gif&issn=0305-1048&client=summon
thumbnail_s http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/sc.gif&issn=0305-1048&client=summon