| Literature DB >> 31038454 |
David Trombley McSwiggen1,2, Anders S Hansen1,2, Sheila S Teves1,3, Hervé Marie-Nelly1,2, Yvonne Hao1, Alec Basil Heckert1,2, Kayla K Umemoto1, Claire Dugast-Darzacq1,2, Robert Tjian1,4, Xavier Darzacq1.
Abstract
RNA Polymerase II (Pol II) and transcription factors form concentrated hubs in cells via multivalent protein-protein interactions, often mediated by proteins with intrinsically disordered regions. During Herpes Simplex Virus infection, viral replication compartments (RCs) efficiently enrich host Pol II into membraneless domains, reminiscent of liquid-liquid phase separation. Despite sharing several properties with phase-separated condensates, we show that RCs operate via a distinct mechanism wherein unrestricted nonspecific protein-DNA interactions efficiently outcompete host chromatin, profoundly influencing the way DNA-binding proteins explore RCs. We find that the viral genome remains largely nucleosome-free, and this increase in accessibility allows Pol II and other DNA-binding proteins to repeatedly visit nearby DNA binding sites. This anisotropic behavior creates local accumulations of protein factors despite their unrestricted diffusion across RC boundaries. Our results reveal underappreciated consequences of nonspecific DNA binding in shaping gene activity, and suggest additional roles for chromatin in modulating nuclear function and organization.Entities:
Keywords: RNA Polymerase II; chromatin function; chromosomes; gene expression; human; molecular biophysics; nuclear organization; phase separation; single particle tracking; structural biology; transcription factors; virus
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Year: 2019 PMID: 31038454 PMCID: PMC6522219 DOI: 10.7554/eLife.47098
Source DB: PubMed Journal: Elife ISSN: 2050-084X Impact factor: 8.140