2021
DOI: 10.21203/rs.3.rs-618212/v1
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Crotonylation promotes human embryonic stem cell endodermal lineage differentiation and metabolic switch

Abstract: Post-translational modifications of proteins are crucial to the regulation of their activity and function. As a newly discovered acylation modification, crotonylation of non-histone proteins remains largely unexplored, particularly in human embryonic stem cells (hESCs). Here we report the investigation of induced crotonylation in hESCs, which resulted in hESCs of different pluripotency states differentiating into the endodermal lineage. We showed that increased protein crotonylation in hESCs was accompanied by… Show more

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