Effective dynamics of nucleosome configurations at the yeast <i>PHO5</i> promoter.

Wolff, Michael Roland; Schmid, Andrea; Korber, Philipp; Gerland, Ulrich · Elife · 2021

basic_science · Level V

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Abstract

Chromatin dynamics are mediated by remodeling enzymes and play crucial roles in gene regulation, as established in a paradigmatic model, the <i>Saccharomyces cerevisiae PHO5</i> promoter. However, effective nucleosome dynamics, that is, trajectories of promoter nucleosome configurations, remain elusive. Here, we infer such dynamics from the integration of published single-molecule data capturing multi-nucleosome configurations for repressed to fully active <i>PHO5</i> promoter states with other existing histone turnover and new chromatin accessibility data. We devised and systematically investigated a new class of 'regulated on-off-slide' models simulating global and local nucleosome (dis)assembly and sliding. Only seven of 68,145 models agreed well with all data. All seven models involve sliding and the known central role of the N-2 nucleosome, but regulate promoter state transitions by modulating just one assembly rather than disassembly process. This is consistent with but challenges common interpretations of previous observations at the <i>PHO5</i> promoter and suggests chromatin opening by binding competition.

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