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Mechanisms of gene regulation by SRCAP and H2A.Z

Tollenaere, A.; Ugur, E.; Dalla-Longa, S.; Deluz, C.; Assenheimer, D.; Gebhardt, J. C. M.; Leonhardt, H.; Suter, D. M.

2025-02-13 molecular biology
10.1101/2024.06.07.597899 bioRxiv
Show abstract

Discriminating regulatory functions of chromatin composition from those of chromatin-modifying complexes is a central problem in gene regulation. This question remains unexplored in the context of histone variants and their dedicated chromatin remodelers. Here we dissect the distinct and cell cycle-dependent functions of Snf2 Related CREBBP Activator Protein (SRCAP) and H2A.Z in gene regulation of pluripotent stem cells. We uncover dynamic changes of H2A.Z occupancy and continuous requirement of SRCAP over the cell cycle. We discover that SRCAP exhibits essential H2A.Z-independent functions in inhibiting DNA binding of dozens of pioneer transcription factors at enhancers by steric hindrance. In contrast, H2A.Z acts mainly as a transcriptional repressor gatekeeping the expression of lineage-specific genes. Our study establishes the catalytic-independent role of a chromatin remodeler in broadly regulating transcription factor binding, and demonstrates how a chromatin remodeler-histone variant pair orchestrates transcription to maintain self-renewal and plasticity of pluripotent stem cells.

Published in Nature Communications (predicted rank #1) · training set

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