Adaptor Aly and co-adaptor Thoc5 function in the Tap-p15-mediated nuclear export of HSP70 mRNA

In metazoans, nuclear export of bulk mRNA is mediated by Tap‐p15, a conserved heterodimeric export receptor that cooperates with adaptor RNA‐binding proteins. In this article, we show that Thoc5, a subunit of the mammalian TREX complex, binds to a distinct surface on the middle (Ntf2‐like) domain of...

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Published inThe EMBO journal Vol. 28; no. 5; pp. 556 - 567
Main Authors Katahira, Jun, Inoue, Hitomi, Hurt, Ed, Yoneda, Yoshihiro
Format Journal Article
LanguageEnglish
Published Chichester, UK John Wiley & Sons, Ltd 04.03.2009
Nature Publishing Group UK
Blackwell Publishing Ltd
Nature Publishing Group
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Abstract In metazoans, nuclear export of bulk mRNA is mediated by Tap‐p15, a conserved heterodimeric export receptor that cooperates with adaptor RNA‐binding proteins. In this article, we show that Thoc5, a subunit of the mammalian TREX complex, binds to a distinct surface on the middle (Ntf2‐like) domain of Tap. Notably, adaptor protein Aly and Thoc5 can simultaneously bind to non‐overlapping binding sites on Tap‐p15. In vivo , Thoc5 was not required for bulk mRNA export. However, nuclear export of HSP70 mRNA depends on both Thoc5 and Aly. Consistent with a function as a specific export adaptor, Thoc5 exhibits in vitro RNA‐binding activity and is associated with HSP70 mRNPs in vivo as a component of the stable THO complex. Thus, through the combinatorial use of an adaptor (e.g., Aly) and co‐adapter (e.g., Thoc5), Tap‐p15 could function as an export receptor for different classes of mRNAs.
AbstractList In metazoans, nuclear export of bulk mRNA is mediated by Tap-p15, a conserved heterodimeric export receptor that cooperates with adaptor RNA-binding proteins. In this article, we show that Thoc5, a subunit of the mammalian TREX complex, binds to a distinct surface on the middle (Ntf2-like) domain of Tap. Notably, adaptor protein Aly and Thoc5 can simultaneously bind to non-overlapping binding sites on Tap-p15. In vivo, Thoc5 was not required for bulk mRNA export. However, nuclear export of HSP70 mRNA depends on both Thoc5 and Aly. Consistent with a function as a specific export adaptor, Thoc5 exhibits in vitro RNA-binding activity and is associated with HSP70 mRNPs in vivo as a component of the stable THO complex. Thus, through the combinatorial use of an adaptor (e.g., Aly) and co-adapter (e.g., Thoc5), Tap-p15 could function as an export receptor for different classes of mRNAs.
In metazoans, nuclear export of bulk mRNA is mediated by Tap-p15, a conserved heterodimeric export receptor that cooperates with adaptor RNA-binding proteins. In this article, we show that Thoc5, a subunit of the mammalian TREX complex, binds to a distinct surface on the middle (Ntf2-like) domain of Tap. Notably, adaptor protein Aly and Thoc5 can simultaneously bind to non-overlapping binding sites on Tap-p15. In vivo, Thoc5 was not required for bulk mRNA export. However, nuclear export of HSP70 mRNA depends on both Thoc5 and Aly. Consistent with a function as a specific export adaptor, Thoc5 exhibits in vitro RNA-binding activity and is associated with HSP70 mRNPs in vivo as a component of the stable THO complex. Thus, through the combinatorial use of an adaptor (e.g., Aly) and co-adapter (e.g., Thoc5), Tap-p15 could function as an export receptor for different classes of mRNAs. [PUBLICATION ABSTRACT]
In metazoans, nuclear export of bulk mRNA is mediated by Tap-p15, a conserved heterodimeric export receptor that cooperates with adaptor RNA-binding proteins. In this article, we show that Thoc5, a subunit of the mammalian TREX complex, binds to a distinct surface on the middle (Ntf2-like) domain of Tap. Notably, adaptor protein Aly and Thoc5 can simultaneously bind to non-overlapping binding sites on Tap-p15. In vivo , Thoc5 was not required for bulk mRNA export. However, nuclear export of HSP70 mRNA depends on both Thoc5 and Aly. Consistent with a function as a specific export adaptor, Thoc5 exhibits in vitro RNA-binding activity and is associated with HSP70 mRNPs in vivo as a component of the stable THO complex. Thus, through the combinatorial use of an adaptor (e.g., Aly) and co-adapter (e.g., Thoc5), Tap-p15 could function as an export receptor for different classes of mRNAs.
Author Katahira, Jun
Inoue, Hitomi
Yoneda, Yoshihiro
Hurt, Ed
Author_xml – sequence: 1
  givenname: Jun
  surname: Katahira
  fullname: Katahira, Jun
  email: katahira@anat3.med.osaka-u.ac.jp
  organization: Biomolecular Networks Laboratories, Biomolecular Dynamics Laboratory, Graduate School of Frontier Biosciences, Osaka University, Yamadaoka, Suita, Osaka, Japan
– sequence: 2
  givenname: Hitomi
  surname: Inoue
  fullname: Inoue, Hitomi
  organization: Biomolecular Networks Laboratories, Biomolecular Dynamics Laboratory, Graduate School of Frontier Biosciences, Osaka University, Yamadaoka, Osaka, Suita, Japan
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  givenname: Ed
  surname: Hurt
  fullname: Hurt, Ed
  organization: Biochemie-Zentrum der Universität Heidelberg (BZH), Im Neuenheimer Feld, Heidelberg, Germany
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  givenname: Yoshihiro
  surname: Yoneda
  fullname: Yoneda, Yoshihiro
  email: katahira@anat3.med.osaka-u.ac.jp
  organization: Biomolecular Networks Laboratories, Biomolecular Dynamics Laboratory, Graduate School of Frontier Biosciences, Osaka University, Yamadaoka, Suita, Osaka, Japan
BackLink https://www.ncbi.nlm.nih.gov/pubmed/19165146$$D View this record in MEDLINE/PubMed
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Issue 5
Keywords nucleo‐cytoplasmic transport
heat shock mRNA
TREX complex
Language English
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PublicationDate March 4, 2009
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  text: March 4, 2009
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Publisher John Wiley & Sons, Ltd
Nature Publishing Group UK
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Joshi, CP, Nguyen, HT (b26) 1995; 23
Fribourg, S, Braun, IC, Izaurralde, E, Conti, E (b9) 2001; 8
Strasser, K, Hurt, E (b54) 2001; 413
Yost, HJ, Lindquist, S (b63) 1986; 45
Huang, Y, Yario, TA, Steitz, JA (b20) 2004; 101
Stutz, F, Bachi, A, Doerks, T, Braun, IC, Seraphin, B, Wilm, M, Bork, P, Izaurralde, E (b56) 2000; 6
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Masuda, S, Das, R, Cheng, H, Hurt, E, Dorman, N, Reed, R (b38) 2005; 19
McGarry, TJ, Lindquist, S (b39) 1985; 42
Katahira, J, Miki, T, Takano, K, Maruhashi, M, Uchikawa, M, Tachibana, T, Yoneda, Y (b29) 2007; 36
Abruzzi, KC, Lacadie, S, Rosbash, M (b1) 2004; 23
Yoh, SM, Cho, H, Pickle, L, Evans, RM, Jones, KA (b62) 2007; 21
Reed, R, Cheng, H (b42) 2005; 17
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Jimeno, S, Rondon, AG, Luna, R, Aguilera, A (b23) 2002; 21
Marr, MT, D'Alessio, JA, Puig, O, Tjian, R (b37) 2007; 21
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Rother, S, Strasser, K (b46) 2007; 21
Longman, D, Johnstone, IL, Caceres, JF (b35) 2003; 9
Merz, C, Urlaub, H, Will, CL, Luhrmann, R (b40) 2007; 13
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Huang, Y, Gattoni, R, Stevenin, J, Steitz, JA (b19) 2003; 11
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Kohler, Hurt (CR33) 2007; 8
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Strasser, Hurt (CR53) 2000; 19
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Huang, Yario, Steitz (CR20) 2004; 101
Reed, Cheng (CR42) 2005; 17
Yao, Roser, Kohler, Bradatsch, Bassler, Hurt (CR61) 2007; 26
Katahira, Strasser, Saiwaki, Yoneda, Hurt (CR30) 2002; 277
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Marr II, D'Alessio, Puig, Tjian (CR37) 2007; 21
Gilbert, Guthrie (CR12) 2004; 13
Jimeno, Rondon, Luna, Aguilera (CR23) 2002; 21
Herold, Klymenko, Izaurralde (CR16) 2001; 7
Reed, Hurt (CR43) 2002; 108
Strasser, Basler, Hurt (CR52) 2000; 150
Gatfield, Izaurralde (CR10) 2002; 159
Huang, Gattoni, Stevenin, Steitz (CR19) 2003; 11
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Bond (CR4) 1988; 7
Longman, Johnstone, Caceres (CR35) 2003; 9
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Saavedra, Tung, Amberg, Hopper, Cole (CR47) 1996; 10
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Terry, Wente (CR58) 2007; 178
Rehwinkel, Herold, Gari, Kocher, Rode, Ciccarelli, Wilm, Izaurralde (CR44) 2004; 11
Klemenz, Hultmark, Gehring (CR32) 1985; 4
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Chen, Moore, Ge, Young, Lee, Stevens (CR5) 2007; 35
Jolly, Mongelard, Robert‐Nicoud, Vourc'h (CR24) 1997; 45
Shukla, Dominski, Zwierzynski, Kole (CR50) 1990; 265
Masuda, Das, Cheng, Hurt, Dorman, Reed (CR38) 2005; 19
Joshi‐Barve, De Benedetti, Rhoads (CR27) 1992; 267
Santos‐Rosa, Moreno, Simos, Segref, Fahrenkrog, Pante, Hurt (CR48) 1998; 18
Storti, Scott, Rich, Pardue (CR51) 1980; 22
Abruzzi, Lacadie, Rosbash (CR1) 2004; 23
Rother, Strasser (CR46) 2007; 21
Joshi, Nguyen (CR26) 1995; 23
Herold, Suyama, Rodrigues, Braun, Kutay, Carmo‐Fonseca, Bork, Izaurralde (CR17) 2000; 20
Stutz, Bachi, Doerks, Braun, Seraphin, Wilm, Bork, Izaurralde (CR56) 2000; 6
Kang, Cullen (CR28) 1999; 13
Katahira, Miki, Takano, Maruhashi, Uchikawa, Tachibana, Yoneda (CR29) 2007; 36
Zhou, Luo, Strasser, Katahira, Hurt, Reed (CR64) 2000; 407
Strasser, Masuda, Mason, Pfannstiel, Oppizzi, Rodriguez‐Navarro, Rondon, Aguilera, Struhl, Reed, Hurt (CR55) 2002; 417
Nojima, Hirose, Kimura, Hagiwara (CR41) 2007; 282
Segref, Sharma, Doye, Hellwig, Huber, Luhrmann, Hurt (CR49) 1997; 16
Merz, Urlaub, Will, Luhrmann (CR40) 2007; 13
Xle, Han, Peyrard, Ruttledge, Fransson, DeJong, Collins, Dunham, Nordenakjold, Dumanski (CR59) 1993; 2
Devos, Dokudovskaya, Williams, Alber, Eswar, Chait, Rout, Sali (CR7) 2006; 103
Liker, Fernandez, Izaurralde, Conti (CR34) 2000; 19
Cheng, Dufu, Lee, Hsu, Dias, Reed (CR6) 2006; 127
Katahira, Strasser, Podtelejnikov, Mann, Jung, Hurt (CR31) 1999; 18
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Snippet In metazoans, nuclear export of bulk mRNA is mediated by Tap‐p15, a conserved heterodimeric export receptor that cooperates with adaptor RNA‐binding proteins....
In metazoans, nuclear export of bulk mRNA is mediated by Tap-p15, a conserved heterodimeric export receptor that cooperates with adaptor RNA-binding proteins....
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StartPage 556
SubjectTerms Active Transport, Cell Nucleus
Amino Acid Sequence
Binding sites
Cell Line
Cell Nucleus - metabolism
EMBO36
heat shock mRNA
HSP70 Heat-Shock Proteins - genetics
HSP70 Heat-Shock Proteins - metabolism
Humans
Mammals
Models, Molecular
Molecular biology
Molecular Sequence Data
Nuclear Proteins - metabolism
nucleo-cytoplasmic transport
Nucleocytoplasmic Transport Proteins - physiology
Proteins
Ribonucleic acid
RNA
RNA, Messenger - metabolism
RNA-Binding Proteins - metabolism
RNA-Binding Proteins - physiology
Transcription Factors - metabolism
TREX complex
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Title Adaptor Aly and co-adaptor Thoc5 function in the Tap-p15-mediated nuclear export of HSP70 mRNA
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http://dx.doi.org/10.1038/emboj.2009.5
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https://onlinelibrary.wiley.com/doi/abs/10.1038%2Femboj.2009.5
https://www.ncbi.nlm.nih.gov/pubmed/19165146
https://www.proquest.com/docview/195262773
https://search.proquest.com/docview/66997104
https://pubmed.ncbi.nlm.nih.gov/PMC2657587
Volume 28
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