A splicing factor-cohesin association links RNA processing to cohesin-dependent genome folding

Interphase cohesin organizes the genome into loops and domains, yet how cohesin is efficiently recruited and loaded onto chromatin in cells remains incompletely understood. Using complementary proteomic approaches, we identify a group of pre-mRNA splicing factors that are spatially proximal to the cohesin loader MAU2 and physically associate with cohesin. Focusing on cell division cycle 5-like (CDC5L), we show that its acute depletion in human cells perturbs pre-mRNA processing and reduces cohesin STAG2 occupancy on chromatin. These changes are accompanied by weakened chromatin interactions within topological domains and a redistribution of chromatin loops associated with cohesin STAG1 . At the molecular level, CDC5L is enriched at active promoters and enhancers, while biochemical fractionation indicates reduced chromatin association of NIPBL, a key regulator of cohesin-dependent genome folding, following CDC5L depletion. Together, our findings reveal a functional association between RNA-processing factors and cohesin-mediated genome organization, suggesting an additional functional layer that links transcription-associated processes to higher-order chromatin architecture.

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Publication Details

Journal
Cell Reports
Published
2026-09-21
DOI
https://doi.org/10.1016/j.celrep.2026.118008
Primary Topic
RNA Research and Splicing
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article
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article

A splicing factor-cohesin association links RNA processing to cohesin-dependent genome folding

Ya Guo, Zihang Yin, Hewei Xu, Yefan Wang et al.
Cell Reports
RNA Research and Splicing
article

A splicing factor-cohesin association links RNA processing to cohesin-dependent genome folding

Ya Guo, Zihang Yin, Hewei Xu, Yefan Wang, Wuming Wang, Wenchao Gu, Tao Wu, Zhiyu Zhang, Heng Zhang, Shuang Cui
article en

Abstract

Interphase cohesin organizes the genome into loops and domains, yet how cohesin is efficiently recruited and loaded onto chromatin in cells remains incompletely understood. Using complementary proteomic approaches, we identify a group of pre-mRNA splicing factors that are spatially proximal to the cohesin loader MAU2 and physically associate with cohesin. Focusing on cell division cycle 5-like (CDC5L), we show that its acute depletion in human cells perturbs pre-mRNA processing and reduces cohesin STAG2 occupancy on chromatin. These changes are accompanied by weakened chromatin interactions within topological domains and a redistribution of chromatin loops associated with cohesin STAG1 . At the molecular level, CDC5L is enriched at active promoters and enhancers, while biochemical fractionation indicates reduced chromatin association of NIPBL, a key regulator of cohesin-dependent genome folding, following CDC5L depletion. Together, our findings reveal a functional association between RNA-processing factors and cohesin-mediated genome organization, suggesting an additional functional layer that links transcription-associated processes to higher-order chromatin architecture.

Cell ReportsVol. 45(10)
Chinese University of Hong Kong (HK), Shanghai Jiao Tong University (CN), Ministry of Education (TH), Pudong New Area People's Hospital (CN)
Zero hunger
Openalex Percentile: Top 18%
RNA Research and Splicing
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A splicing factor-cohesin association links RNA processing to cohesin-dependent genome folding — Ya Guo, Zihang Yin, et al. · Cell Reports (2026) | TGRS Research Map | TGRS