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◇ bioRxiv2026-08-26· molecular biology

BAF perturbation heightens cancer cell dependence on CDK12-driven transcription elongation by RNA polymerase II

M. Macakova, C. Danyko, S. Oberlin, T. B. V. Bui, O. Kauko, H. Yin, Y. Bai, C. C. Friedel, H. M. Haikala, A. Vihervaara, J. M. Rosenbluth, M. T. McManus, S. Henikoff, M. Barboric

原始摘要(英文原文)· Original abstract
CDK12 facilitates transcriptional elongation and processivity by RNA polymerase II (Pol II). Although it has emerged as a promising actor and target in cancer, better understanding of CDK12 gene transcription control could inform the design of novel anti-cancer strategies. Here, we identify a co-dependency between CDK12 and the BAF chromatin-remodeling complex in triple-negative breast cancer (TNBC). Genome-scale CRISPR interference screening revealed multiple BAF subunits as strong dependencies upon CDK12 inhibition. In turn, pharmacological co-targeting of CDK12 and BAF ATPase synergistically reduced the viability of multiple TNBC models. Mechanistically, the co-inhibition attenuated di-phosphorylation of the Pol II C-terminal domain at Serine-2 and Serine-5 and depleted canonical pre-mRNA 3'-end processing factors from chromatin, driving accumulation of chromatin-associated Pol II, upstream of apoptosis. Whereas BAF inhibition rapidly reduced transcription-coupled DNA accessibility, CDK12 inhibition imposed a gene length-biased transcriptional defect exacerbated by BAF deficiency. In turn, co-inhibited cells, marked by synergistic induction of MYC and repression of long cell-cycle and mitotic genes, showed a failure of DNA synthesis and mitotic entry, culminating in MYC-mediated apoptosis. Together, our findings reveal a regulatory axis in which impaired Pol II elongation creates a heightened requirement for BAF-dependent chromatin remodeling. This discovered co-dependency provides a rationale for co-targeting the CDK12-BAF axis in transcriptionally addicted cancers.
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BAF perturbation heightens cancer cell dependence on CDK12-driven transcription elongation by RNA polymerase II — 科研速览 Science Skim