Sensitizing tumor response to topoisomerase I antibody-drug conjugate by selective CDK7 inhibition

This study investigates the transcriptional impact of Q901, a highly selective cyclin-dependent kinase 7 (CDK7) inhibitor in clinical development. Q901 primarily disrupted MYC and E2F-dependent transcription programs, down-regulating cell cycle control and DNA damage repair pathways. CDK7 binding at the promoter-proximal regions was markedly stabilized by Q901, leading to reduced occupancy of MYC, E2F, and RNA polymerase II (RNAPII). These findings offered a novel therapeutic strategy to enhance cancer susceptibility to topoisomerase I (TOP1) DNA-protein cross-links (TOP1-DPCs) induced by TOP1 inhibitors. Resistance to TOP1 inhibitors arises through activation of DNA repair pathways when elongating RNAPII encounters TOP1-DPCs. By suppressing RNAPII transition from initiation to elongation and DNA repair pathways, Q901 stabilizes TOP1-DPCs and sensitizes tumors to TOP1 inhibitors. Preclinical studies demonstrated enhanced tumor suppression when combining Q901 with TOP1 inhibitor–based antibody-drug conjugates (TOP1i-ADCs), highlighting its potential as a therapeutic option for cancers resistant to TOP1i-ADC therapy.

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Publication Details

Journal
Science Advances
Published
2026-09-30
DOI
https://doi.org/10.1126/sciadv.aeb4023
Primary Topic
HER2/EGFR in Cancer Research
Type
article
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article

Sensitizing tumor response to topoisomerase I antibody-drug conjugate by selective CDK7 inhibition

DongHoon Yu, Dongsik Park, Dahun Um, Mooyoung Seo et al.
Science Advances
HER2/EGFR in Cancer Research
article

Sensitizing tumor response to topoisomerase I antibody-drug conjugate by selective CDK7 inhibition

DongHoon Yu, Dongsik Park, Dahun Um, Mooyoung Seo, Yilun Sun, Yeejin Jeon, Tae-Kyung Kim, Anish Thomas, Kiyean Nam, Jeongjun Kim, Seung-Joo Lee, Hwankyu Kang, Hyerim Jung, Jaeseung Kim, Lauren Escobedo, Yoonji Lee
article en

Abstract

This study investigates the transcriptional impact of Q901, a highly selective cyclin-dependent kinase 7 (CDK7) inhibitor in clinical development. Q901 primarily disrupted MYC and E2F-dependent transcription programs, down-regulating cell cycle control and DNA damage repair pathways. CDK7 binding at the promoter-proximal regions was markedly stabilized by Q901, leading to reduced occupancy of MYC, E2F, and RNA polymerase II (RNAPII). These findings offered a novel therapeutic strategy to enhance cancer susceptibility to topoisomerase I (TOP1) DNA-protein cross-links (TOP1-DPCs) induced by TOP1 inhibitors. Resistance to TOP1 inhibitors arises through activation of DNA repair pathways when elongating RNAPII encounters TOP1-DPCs. By suppressing RNAPII transition from initiation to elongation and DNA repair pathways, Q901 stabilizes TOP1-DPCs and sensitizes tumors to TOP1 inhibitors. Preclinical studies demonstrated enhanced tumor suppression when combining Q901 with TOP1 inhibitor–based antibody-drug conjugates (TOP1i-ADCs), highlighting its potential as a therapeutic option for cancers resistant to TOP1i-ADC therapy.

Science AdvancesVol. 12(40)
Pohang University of Science and Technology (KR), University of Maryland, Baltimore (US), National Cancer Institute (US), Center for Cancer Research (US), Qurient (South Korea) (KR)
Good health and well-being
Openalex Percentile: Top 15%
HER2/EGFR in Cancer Research
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