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Splice‐switch oligonucleotide‐based combinatorial platform prioritizes synthetic lethal targets CHK1 and BRD4 against MYC‐driven hepatocellular carcinoma

Deregulation of MYC is among the most frequent oncogenic drivers in hepatocellular carcinoma (HCC). Unfortunately, the clinical success of MYC‐targeted therapies is limited. Synthetic lethality offers an alternative therapeutic strategy by leveraging on vulnerabilities in tumors with MYC deregulatio...

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Detalles Bibliográficos
Autores principales: Thng, Dexter Kai Hao, Toh, Tan Boon, Pigini, Paolo, Hooi, Lissa, Dan, Yock Young, Chow, Pierce Kah‐Hoe, Bonney, Glenn Kunnath, Rashid, Masturah Bte Mohd Abdul, Guccione, Ernesto, Wee, Dave Keng Boon, Chow, Edward Kai‐Hua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9842033/
https://www.ncbi.nlm.nih.gov/pubmed/36684069
http://dx.doi.org/10.1002/btm2.10363
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author Thng, Dexter Kai Hao
Toh, Tan Boon
Pigini, Paolo
Hooi, Lissa
Dan, Yock Young
Chow, Pierce Kah‐Hoe
Bonney, Glenn Kunnath
Rashid, Masturah Bte Mohd Abdul
Guccione, Ernesto
Wee, Dave Keng Boon
Chow, Edward Kai‐Hua
author_facet Thng, Dexter Kai Hao
Toh, Tan Boon
Pigini, Paolo
Hooi, Lissa
Dan, Yock Young
Chow, Pierce Kah‐Hoe
Bonney, Glenn Kunnath
Rashid, Masturah Bte Mohd Abdul
Guccione, Ernesto
Wee, Dave Keng Boon
Chow, Edward Kai‐Hua
author_sort Thng, Dexter Kai Hao
collection PubMed
description Deregulation of MYC is among the most frequent oncogenic drivers in hepatocellular carcinoma (HCC). Unfortunately, the clinical success of MYC‐targeted therapies is limited. Synthetic lethality offers an alternative therapeutic strategy by leveraging on vulnerabilities in tumors with MYC deregulation. While several synthetic lethal targets of MYC have been identified in HCC, the need to prioritize targets with the greatest therapeutic potential has been unmet. Here, we demonstrate that by pairing splice‐switch oligonucleotide (SSO) technologies with our phenotypic‐analytical hybrid multidrug interrogation platform, quadratic phenotypic optimization platform (QPOP), we can disrupt the functional expression of these targets in specific combinatorial tests to rapidly determine target–target interactions and rank synthetic lethality targets. Our SSO‐QPOP analyses revealed that simultaneous attenuation of CHK1 and BRD4 function is an effective combination specific in MYC‐deregulated HCC, successfully suppressing HCC progression in vitro. Pharmacological inhibitors of CHK1 and BRD4 further demonstrated its translational value by exhibiting synergistic interactions in patient‐derived xenograft organoid models of HCC harboring high levels of MYC deregulation. Collectively, our work demonstrates the capacity of SSO‐QPOP as a target prioritization tool in the drug development pipeline, as well as the therapeutic potential of CHK1 and BRD4 in MYC‐driven HCC.
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spelling pubmed-98420332023-01-19 Splice‐switch oligonucleotide‐based combinatorial platform prioritizes synthetic lethal targets CHK1 and BRD4 against MYC‐driven hepatocellular carcinoma Thng, Dexter Kai Hao Toh, Tan Boon Pigini, Paolo Hooi, Lissa Dan, Yock Young Chow, Pierce Kah‐Hoe Bonney, Glenn Kunnath Rashid, Masturah Bte Mohd Abdul Guccione, Ernesto Wee, Dave Keng Boon Chow, Edward Kai‐Hua Bioeng Transl Med Research Articles Deregulation of MYC is among the most frequent oncogenic drivers in hepatocellular carcinoma (HCC). Unfortunately, the clinical success of MYC‐targeted therapies is limited. Synthetic lethality offers an alternative therapeutic strategy by leveraging on vulnerabilities in tumors with MYC deregulation. While several synthetic lethal targets of MYC have been identified in HCC, the need to prioritize targets with the greatest therapeutic potential has been unmet. Here, we demonstrate that by pairing splice‐switch oligonucleotide (SSO) technologies with our phenotypic‐analytical hybrid multidrug interrogation platform, quadratic phenotypic optimization platform (QPOP), we can disrupt the functional expression of these targets in specific combinatorial tests to rapidly determine target–target interactions and rank synthetic lethality targets. Our SSO‐QPOP analyses revealed that simultaneous attenuation of CHK1 and BRD4 function is an effective combination specific in MYC‐deregulated HCC, successfully suppressing HCC progression in vitro. Pharmacological inhibitors of CHK1 and BRD4 further demonstrated its translational value by exhibiting synergistic interactions in patient‐derived xenograft organoid models of HCC harboring high levels of MYC deregulation. Collectively, our work demonstrates the capacity of SSO‐QPOP as a target prioritization tool in the drug development pipeline, as well as the therapeutic potential of CHK1 and BRD4 in MYC‐driven HCC. John Wiley & Sons, Inc. 2022-09-03 /pmc/articles/PMC9842033/ /pubmed/36684069 http://dx.doi.org/10.1002/btm2.10363 Text en © 2022 The Authors. Bioengineering & Translational Medicine published by Wiley Periodicals LLC on behalf of American Institute of Chemical Engineers. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Thng, Dexter Kai Hao
Toh, Tan Boon
Pigini, Paolo
Hooi, Lissa
Dan, Yock Young
Chow, Pierce Kah‐Hoe
Bonney, Glenn Kunnath
Rashid, Masturah Bte Mohd Abdul
Guccione, Ernesto
Wee, Dave Keng Boon
Chow, Edward Kai‐Hua
Splice‐switch oligonucleotide‐based combinatorial platform prioritizes synthetic lethal targets CHK1 and BRD4 against MYC‐driven hepatocellular carcinoma
title Splice‐switch oligonucleotide‐based combinatorial platform prioritizes synthetic lethal targets CHK1 and BRD4 against MYC‐driven hepatocellular carcinoma
title_full Splice‐switch oligonucleotide‐based combinatorial platform prioritizes synthetic lethal targets CHK1 and BRD4 against MYC‐driven hepatocellular carcinoma
title_fullStr Splice‐switch oligonucleotide‐based combinatorial platform prioritizes synthetic lethal targets CHK1 and BRD4 against MYC‐driven hepatocellular carcinoma
title_full_unstemmed Splice‐switch oligonucleotide‐based combinatorial platform prioritizes synthetic lethal targets CHK1 and BRD4 against MYC‐driven hepatocellular carcinoma
title_short Splice‐switch oligonucleotide‐based combinatorial platform prioritizes synthetic lethal targets CHK1 and BRD4 against MYC‐driven hepatocellular carcinoma
title_sort splice‐switch oligonucleotide‐based combinatorial platform prioritizes synthetic lethal targets chk1 and brd4 against myc‐driven hepatocellular carcinoma
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9842033/
https://www.ncbi.nlm.nih.gov/pubmed/36684069
http://dx.doi.org/10.1002/btm2.10363
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