化学
生物正交化学
生物化学
伴侣(临床)
计算生物学
赖氨酸
蛋白质组学
翻译后修饰
化学生物学
底物特异性
化学改性
半胱氨酸
仿形(计算机编程)
血浆蛋白结合
小分子
蛋白质组
细胞
功能(生物学)
细胞生物学
等压标记
蛋白质生物合成
作者
Xiaohan Song,Yuhan Lu,Panpan Peng,Binjing Chen,He Huang
标识
DOI:10.1021/acs.jproteome.5c00792
摘要
Benzoylation (Kbz) is a physiologically relevant post-translational modification derived from the food additive sodium benzoate. While Kbz has been implicated in unique cellular regulatory processes, its substrate landscape and functional consequences remain poorly characterized. Conventional antibody-based enrichment methods for Kbz detection suffer from affinity bias and limited specificity. Here, we developed AyBz3, a bioorthogonal chemical probe enabling the unbiased mapping of Kbz across the proteome. Implementation of AyBz3 in HepG2 cells revealed 688 unique Kbz sites, significantly expanding the known benzoylome. Functional analysis revealed that Kbz-modified proteins are enriched in pathways related to protein translation and cell adhesion. Notably, we demonstrated that Kbz modification of nucleophosmin 1 (NPM1) impairs its molecular chaperone function toward p53, resulting in accelerated p53 degradation. Together, this study establishes AyBz3 as a powerful probe for unbiased benzoylome profiling and provides new insights into the regulatory roles of Kbz in cellular processes.
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