皮动蛋白
乙酰化
HDAC8型
细胞生物学
细胞
溴尿嘧啶
化学
蛋白质组学
酶
细胞骨架
计算生物学
生物
生物化学
基因
组蛋白甲基转移酶
作者
Yepei Huang,Guijin Zhai,Yun Fu,Yanan Li,Yong Zang,Yu Lin,Kai Zhang
标识
DOI:10.1016/j.chembiol.2024.02.003
摘要
Summary
It is a challenge for the traditional affinity methods to capture transient interactions of enzyme-post-translational modification (PTM) substrates in vivo. Herein we presented a strategy termed proximity labeling-based orthogonal trap approach (ProLORT), relying upon APEX2-catalysed proximity labeling and an orthogonal trap pipeline as well as quantitative proteomics to directly investigate the transient interactome of enzyme-PTM substrates in living cells. As a proof of concept, ProLORT allows for robust evaluation of a known HDAC8 substrate, histone H3K9ac. By leveraging this approach, we identified numerous of putative acetylated proteins targeted by HDAC8, and further confirmed CTTN as a bona fide substrate in vivo. Next, we demonstrated that HDAC8 facilitates cell motility via deacetylation of CTTN at lysine 144 that attenuates its interaction with F-actin, expanding the underlying regulatory mechanisms of HDAC8. We developed a general strategy to profile the transient enzyme-substrate interactions mediated by PTMs, providing a powerful tool for identifying the spatiotemporal PTM-network regulated by enzymes in living cells.
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