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Furthermore, cohesin-interacting splicing factors and RBPs followed the cohesin cycle and prophase pathway of cell cycle-regulated interactions with chromatin. Depletion of cohesin-interacting splicing factors and RBPs resulted in aberrant mitotic progression. These results provide a comprehensive view of the endogenous human cohesin interactome and identify splicing factors and RBPs as functionally significant cohesin-interacting proteins.", "@type": ["Publication", "Item"], "title": "Systematic proteomics of endogenous human cohesin reveals an interaction with diverse splicing factors and RNA-binding proteins required for mitotic progression.", "date_published": "2019-05-31", "uuid": "d5f08680-be3a-462b-a11a-73991e5b0ef1", "journal": "The Journal of biological chemistry", "short_attribution": "Kim JS et al. (2019)", "display_title": "Kim JS et al. 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