Abstract 3956: MYC inhibition overcomes IMiD resistance in heterogeneous multiple myeloma populations

Abstract Introduction: Multiple myeloma (MM) is a plasma cell malignancy that remains incurable, with patients enduring multiple relapses and development of drug resistance. Immunomodulatory drugs (IMiDs) are critical anti-MM agents. IMiDs act by inducing CRBN-dependent proteasomal degradation of th...

Full description

Saved in:
Bibliographic Details
Published inCancer research (Chicago, Ill.) Vol. 82; no. 12_Supplement; p. 3956
Main Authors Davis, Lorraine N., Walker, Zachary J., Ohlstrom, Denis, Stevens, Brett M., Forsberg, Peter A., Mark, Tomer M., Jordan, Craig T., Sherbenou, Daniel W.
Format Journal Article
LanguageEnglish
Published 15.06.2022
Online AccessGet full text

Cover

Loading…
Abstract Abstract Introduction: Multiple myeloma (MM) is a plasma cell malignancy that remains incurable, with patients enduring multiple relapses and development of drug resistance. Immunomodulatory drugs (IMiDs) are critical anti-MM agents. IMiDs act by inducing CRBN-dependent proteasomal degradation of the transcription factors IKZF1 and IKZF3, which leads to IRF4 and MYC downregulation (collectively termed the “Ikaros axis”). Although CRBN aberrations occur, whether they are a functional mechanism of resistance in patients remains unclear. Based on the importance of CRBN in IMiD response, we hypothesized that IMiD treatment fails to downregulate the Ikaros axis in IMiD-resistant MM cells. Methods: To measure IMiD-induced Ikaros axis downregulation, we designed an intracellular flow cytometry assay that measured relative IKZF1, IKZF3, IRF4 and MYC protein levels in MM cells following ex vivo pomalidomide (Pom) treatment. We established this assay using IMiD-sensitive parental and dose-escalated Pom resistant MM1S and H929 cell lines before utilizing it in patient samples (isolated mononuclear cells). To assess the Ikaros axis in the context of MM intratumoral heterogeneity, we used mass cytometry to simultaneously characterize MM subpopulations in patient samples. Lastly, we determined ex vivo drug sensitivity in patient samples via flow cytometry. Results: Our hypothesis was supported in MM cell lines, as sensitive parental lines showed a significant decrease in all Ikaros axis protein levels following Pom treatment, while resistant lines showed no IMiD-induced decrease in any Ikaros axis protein. However, when assessed in CD38+CD138+ cells from patient samples, Pom treatment caused a significant decrease in IKZF1, IKZF3 and IRF4 regardless of IMiD sensitivity. Mass cytometry in patient samples revealed that individual Ikaros axis proteins were differentially expressed between subpopulations. When correlating this with ex vivo Pom sensitivity of MM subpopulations, we observed that low IKZF1 and IKZF3 corresponded to Pom resistance. Interestingly, most of these resistant populations still expressed MYC. We therefore assessed whether IMiD resistant MM was MYC dependent by treating Pom resistant MM cells with MYCi975. In 88% (7/8) of patient samples tested, IMiD resistant MM cells were sensitive to MYC inhibition. Conclusions: Our findings did not support our initial hypothesis, as IMiD-induced IKZF1 and IKZF3 degradation remains intact in IMiD resistant MM cells from patient samples. However, our data support a mechanism where the Ikaros axis no longer drives MYC expression in IMiD-resistant MM. Therefore, we propose that the critical mediator of IMiD resistance is conversion to a cell state where MYC expression is Ikaros axis independent. This suggests targeting MYC directly or via the as yet uncharacterized mechanism controlling MYC may be an effective strategy to eradicate IMiD resistant MM. Citation Format: Lorraine N. Davis, Zachary J. Walker, Denis Ohlstrom, Brett M. Stevens, Peter A. Forsberg, Tomer M. Mark, Craig T. Jordan, Daniel W. Sherbenou. MYC inhibition overcomes IMiD resistance in heterogeneous multiple myeloma populations [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2022; 2022 Apr 8-13. Philadelphia (PA): AACR; Cancer Res 2022;82(12_Suppl):Abstract nr 3956.
AbstractList Abstract Introduction: Multiple myeloma (MM) is a plasma cell malignancy that remains incurable, with patients enduring multiple relapses and development of drug resistance. Immunomodulatory drugs (IMiDs) are critical anti-MM agents. IMiDs act by inducing CRBN-dependent proteasomal degradation of the transcription factors IKZF1 and IKZF3, which leads to IRF4 and MYC downregulation (collectively termed the “Ikaros axis”). Although CRBN aberrations occur, whether they are a functional mechanism of resistance in patients remains unclear. Based on the importance of CRBN in IMiD response, we hypothesized that IMiD treatment fails to downregulate the Ikaros axis in IMiD-resistant MM cells. Methods: To measure IMiD-induced Ikaros axis downregulation, we designed an intracellular flow cytometry assay that measured relative IKZF1, IKZF3, IRF4 and MYC protein levels in MM cells following ex vivo pomalidomide (Pom) treatment. We established this assay using IMiD-sensitive parental and dose-escalated Pom resistant MM1S and H929 cell lines before utilizing it in patient samples (isolated mononuclear cells). To assess the Ikaros axis in the context of MM intratumoral heterogeneity, we used mass cytometry to simultaneously characterize MM subpopulations in patient samples. Lastly, we determined ex vivo drug sensitivity in patient samples via flow cytometry. Results: Our hypothesis was supported in MM cell lines, as sensitive parental lines showed a significant decrease in all Ikaros axis protein levels following Pom treatment, while resistant lines showed no IMiD-induced decrease in any Ikaros axis protein. However, when assessed in CD38+CD138+ cells from patient samples, Pom treatment caused a significant decrease in IKZF1, IKZF3 and IRF4 regardless of IMiD sensitivity. Mass cytometry in patient samples revealed that individual Ikaros axis proteins were differentially expressed between subpopulations. When correlating this with ex vivo Pom sensitivity of MM subpopulations, we observed that low IKZF1 and IKZF3 corresponded to Pom resistance. Interestingly, most of these resistant populations still expressed MYC. We therefore assessed whether IMiD resistant MM was MYC dependent by treating Pom resistant MM cells with MYCi975. In 88% (7/8) of patient samples tested, IMiD resistant MM cells were sensitive to MYC inhibition. Conclusions: Our findings did not support our initial hypothesis, as IMiD-induced IKZF1 and IKZF3 degradation remains intact in IMiD resistant MM cells from patient samples. However, our data support a mechanism where the Ikaros axis no longer drives MYC expression in IMiD-resistant MM. Therefore, we propose that the critical mediator of IMiD resistance is conversion to a cell state where MYC expression is Ikaros axis independent. This suggests targeting MYC directly or via the as yet uncharacterized mechanism controlling MYC may be an effective strategy to eradicate IMiD resistant MM. Citation Format: Lorraine N. Davis, Zachary J. Walker, Denis Ohlstrom, Brett M. Stevens, Peter A. Forsberg, Tomer M. Mark, Craig T. Jordan, Daniel W. Sherbenou. MYC inhibition overcomes IMiD resistance in heterogeneous multiple myeloma populations [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2022; 2022 Apr 8-13. Philadelphia (PA): AACR; Cancer Res 2022;82(12_Suppl):Abstract nr 3956.
Author Jordan, Craig T.
Davis, Lorraine N.
Stevens, Brett M.
Mark, Tomer M.
Ohlstrom, Denis
Forsberg, Peter A.
Walker, Zachary J.
Sherbenou, Daniel W.
Author_xml – sequence: 1
  givenname: Lorraine N.
  surname: Davis
  fullname: Davis, Lorraine N.
– sequence: 2
  givenname: Zachary J.
  surname: Walker
  fullname: Walker, Zachary J.
– sequence: 3
  givenname: Denis
  surname: Ohlstrom
  fullname: Ohlstrom, Denis
– sequence: 4
  givenname: Brett M.
  surname: Stevens
  fullname: Stevens, Brett M.
– sequence: 5
  givenname: Peter A.
  surname: Forsberg
  fullname: Forsberg, Peter A.
– sequence: 6
  givenname: Tomer M.
  surname: Mark
  fullname: Mark, Tomer M.
– sequence: 7
  givenname: Craig T.
  surname: Jordan
  fullname: Jordan, Craig T.
– sequence: 8
  givenname: Daniel W.
  surname: Sherbenou
  fullname: Sherbenou, Daniel W.
BookMark eNqdj0FLAzEQhYO0YGv9CYX5A1uT3cZWb6Uq7WFvvXgK6TK1kSSzZLJC_70GRTx7msfw3uN7UzGKFFGIuZILpfT6TulmXa2WS73YtLWs66p50PdXYvL7H_3R12LK_C6l1ErqicDNkXOyXYYSeoT2dQsunt3RZUcR6ANTRwEZ9q17goTsONvY4ZcJzpgx0RtGpIEhDD673iOEC3oKFnrqB29LDc_E-GQ94-3PvRH65fmw3VVdIuaEJ9MnF2y6GCVN2WQKrym85nuTKXjNf3OfiatYcQ
ContentType Journal Article
DBID AAYXX
CITATION
DOI 10.1158/1538-7445.AM2022-3956
DatabaseName CrossRef
DatabaseTitle CrossRef
DatabaseTitleList CrossRef
DeliveryMethod fulltext_linktorsrc
Discipline Medicine
EISSN 1538-7445
EndPage 3956
ExternalDocumentID 10_1158_1538_7445_AM2022_3956
GroupedDBID ---
-ET
18M
29B
2WC
34G
39C
476
53G
5GY
5RE
5VS
6J9
AAYXX
ABOCM
ACGFO
ACIWK
ACPRK
ACSVP
ADBBV
ADCOW
ADNWM
AENEX
AFHIN
AFOSN
AFRAH
ALMA_UNASSIGNED_HOLDINGS
BAWUL
BTFSW
CITATION
CS3
DIK
DU5
EBS
EJD
F5P
FRP
GX1
IH2
KQ8
L7B
LSO
OK1
P0W
P2P
PQQKQ
RCR
RHF
RHI
RNS
SJN
TR2
W2D
W8F
WH7
WOQ
YKV
YZZ
ID FETCH-crossref_primary_10_1158_1538_7445_AM2022_39563
ISSN 1538-7445
IngestDate Thu Sep 26 16:54:19 EDT 2024
IsPeerReviewed true
IsScholarly true
Issue 12_Supplement
Language English
LinkModel OpenURL
MergedId FETCHMERGED-crossref_primary_10_1158_1538_7445_AM2022_39563
ParticipantIDs crossref_primary_10_1158_1538_7445_AM2022_3956
PublicationCentury 2000
PublicationDate 2022-06-15
PublicationDateYYYYMMDD 2022-06-15
PublicationDate_xml – month: 06
  year: 2022
  text: 2022-06-15
  day: 15
PublicationDecade 2020
PublicationTitle Cancer research (Chicago, Ill.)
PublicationYear 2022
SSID ssj0005105
Score 4.4760957
Snippet Abstract Introduction: Multiple myeloma (MM) is a plasma cell malignancy that remains incurable, with patients enduring multiple relapses and development of...
SourceID crossref
SourceType Aggregation Database
StartPage 3956
Title Abstract 3956: MYC inhibition overcomes IMiD resistance in heterogeneous multiple myeloma populations
Volume 82
hasFullText 1
inHoldings 1
isFullTextHit
isPrint
link http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwnV1LT8MwDI4GSIgL4ineyoFb1LL1sQ1u0wBtQOECEnCpmi7VKm0t2soB_iH_Crtp0wATYlyqLVudNP7m2Nlnh5DjkHNYNYJTI6i3QsMZ1F2jHdXbBo_AP2g2BhZvYL6zd9vsPThXj-5jrfahsZZeM26G7zPzSv6jVWgDvWKW7ByaVUKhAV6DfuEKGobrn3Tc4bhREWbMhvgDY3vvqcviZBjzWDqC8ETQr5iyvhefM4is0VvEn3KcgIsIU5qCbIEsWEUsHL-JUToO2Is62WuqO7BdvH3CihpBw_xPYMnmyK3NaGRqewuqhMFNOsGjKAS7NbUd_ILQ8Rxg6tcbu1Kf3Q1H8GDpWBpEWfukZB-DcZ5KUIosY56pb1tAxIvn_bjfLG3LkbUkTTGjrTDPbUuHoeXnp51WtCBpd3GatTW8fPtzfXAx50H1Y3a8fGzV7Xo97m_rpGIv5nGT2_ZRjI9ifCnGRzELZMkCm5czBvrXFdtIsmlVz0UyGYg5mTkazU3S_J37NbJaBCq0I1G3Tmoi2SDLXkHF2CSiBB9FQWcUoEcr6FEFPYrQoxX04Ev0C_RoCT1aQI9q0Nsi7uXFfbdnlMP0X2R5FP_X6bG3yWKSJmKH0EHLjhqRFdoRdyBsFrwZODwUls0bYhBY0S4x55O9N-8N-2SlguYBWcwmr-IQfMyMH-Xa-wTBfnpa
link.rule.ids 315,783,787,27936,27937
linkProvider Flying Publisher
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=Abstract+3956%3A+MYC+inhibition+overcomes+IMiD+resistance+in+heterogeneous+multiple+myeloma+populations&rft.jtitle=Cancer+research+%28Chicago%2C+Ill.%29&rft.au=Davis%2C+Lorraine+N.&rft.au=Walker%2C+Zachary+J.&rft.au=Ohlstrom%2C+Denis&rft.au=Stevens%2C+Brett+M.&rft.date=2022-06-15&rft.issn=1538-7445&rft.eissn=1538-7445&rft.volume=82&rft.issue=12_Supplement&rft.spage=3956&rft.epage=3956&rft_id=info:doi/10.1158%2F1538-7445.AM2022-3956&rft.externalDBID=n%2Fa&rft.externalDocID=10_1158_1538_7445_AM2022_3956
thumbnail_l http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/lc.gif&issn=1538-7445&client=summon
thumbnail_m http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/mc.gif&issn=1538-7445&client=summon
thumbnail_s http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/sc.gif&issn=1538-7445&client=summon