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Transcription remodeling and stalling by cisplatin-induced interstrand crosslinks.

Created on 03 Oct 2026

Authors

Liulian Zhu, Weiqi Zhao, Lei Ye, Yankai Liu, Wenjing Deng, Bingshuo Qian, Xin Yang, Jun Xu

Published in

Nature chemical biology. Oct 02, 2026. Epub Oct 02, 2026.

Abstract

Interstrand crosslinks (ICLs) block transcription by mechanisms that remain incompletely understood. Cisplatin induces ICLs that suppress transcription and contribute to its antitumor activity but these effects can be mitigated by transcription-coupled repair. Using reconstituted transcription systems and cryo-electron microscopy, we investigated how RNA polymerase II (Pol II) processes cisplatin-ICLs and captured eight sequential transcriptional states. Pol II unexpectedly remodels the crosslinked guanines into a novel conformation positioned above the bridge helix. This rearranged ICL prevents the damaged base from entering the active site and triggers Pol II backtracking following ATP misincorporation. Furthermore, Cockayne syndrome protein B, an ATP-dependent translocase that initiates transcription-coupled repair, neither promotes lesion bypass nor displaces stalled Pol II, thereby committing the lesion to transcription-coupled repair. These findings identify Pol II as a structural remodeler of cisplatin-ICLs and reveal how the remodeled lesion stalls transcription, providing insight into cellular responses to platinum-based chemotherapy.

PMID:
42827153
Bibliographic data and abstract were imported from PubMed on 03 Oct 2026.

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