4.5 Article

Chemo-proteomics exploration of HDAC degradability by small molecule degraders

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CELL CHEMICAL BIOLOGY
卷 28, 期 10, 页码 1514-+

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CELL PRESS
DOI: 10.1016/j.chembiol.2021.07.002

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  1. Dana-Farber/Novartis Drug Discovery and Translational Research Program [17004-03]

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The study synthesized a pan-HDAC degrader library for exploring acute degradation of chromatin-modifying enzymes, identifying leads for targeting HDACs 1-8 and 10. Cell line-driven target specificity and collateral loss of HDAC-containing repressive complexes were discovered upon HDAC degradation, potentially offering a new mechanism for controlling chromatin structure.
Targeted protein degradation refers to the use of small molecules that recruit a ubiquitin ligase to a target protein for ubiquitination and subsequent proteasome-dependent degradation. While degraders have been developed for many targets, key questions regarding degrader development and the consequences of acute pharmacological degradation remain, specifically for targets that exist in obligate multi-protein complexes. Here, we synthesize a pan-histone deacetylase (HDAC) degrader library for the chemo-proteomic exploration of acute degradation of a key class of chromatin-modifying enzymes. Using chemo-proteomics, we not only map the degradability of the zinc-dependent HDAC family identifying leads for targeting HDACs 1-8 and 10 but also explore important aspects of degrading epigenetic enzymes. We discover cell line-driven target specificity and that HDAC degradation often results in collateral loss of HDAC-containing repressive complexes. These findings potentially offer a new mechanism toward controlling chromatin structure, and our resource will facilitate accelerated degrader design and development for HDACs.

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