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PCMT1在CRBN底物上生成C端环状酰亚胺降解子。

PCMT1 generates the C-terminal cyclic imide degron on CRBN substrates.

作者信息

Zhao Zhenguang, Xu Wenqing, Feng Ethan Yang, Cao Shiyun, Hermoso-López Alba, Peña-Vega Pablo, Lloyd Hannah C, Porter Abigail K D, Guzmán Manuel, Zheng Ning, Woo Christina M

出版信息

bioRxiv. 2025 Mar 25:2025.03.24.645050. doi: 10.1101/2025.03.24.645050.

Abstract

The E3 ligase substrate adapter cereblon (CRBN), the primary target of clinical agents thalidomide and lenalidomide, recognizes endogenous substrates bearing the C-terminal cyclic imide modification. Although C-terminal cyclic imides can form spontaneously, an enzyme that regulates the formation of these modifications and thereby promotes a biological pathway connecting substrates to CRBN is unknown. Here, we report that protein carboxymethyltransferase (PCMT1) promotes formation of the C-terminal cyclic imide on C-terminal asparagine residues of CRBN substrates. PCMT1 and CRBN co-regulate the levels of metabolic enzymes glutamine synthetase (GLUL) and inorganic pyrophosphatase 1 (PPA1) in vitro, in cells, and in vivo, and this regulation is associated with the proepileptic phenotype of CRBN knockout mouse models. The discovery of an enzyme that regulates CRBN substrates through the C-terminal cyclic imide modification reveals a previously unknown biological pathway that is perturbed by thalidomide derivatives and provides a biochemical basis for the connection between multiple biological processes and CRBN.

摘要

E3 泛素连接酶底物衔接蛋白 Cereblon(CRBN)是临床药物沙利度胺和来那度胺的主要作用靶点,它可识别带有 C 端环状酰亚胺修饰的内源性底物。尽管 C 端环状酰亚胺能够自发形成,但一种调节这些修饰形成从而促进将底物与 CRBN 相连的生物学途径的酶尚不清楚。在此,我们报道蛋白质羧甲基转移酶(PCMT1)可促进 CRBN 底物 C 端天冬酰胺残基上 C 端环状酰亚胺的形成。PCMT1 和 CRBN 在体外、细胞内及体内共同调节代谢酶谷氨酰胺合成酶(GLUL)和无机焦磷酸酶 1(PPA1)的水平, 并且这种调节与 CRBN 基因敲除小鼠模型的癫痫发作前期表型相关。通过 C 端环状酰亚胺修饰调节 CRBN 底物的酶的发现揭示了一条此前未知的生物学途径,该途径受到沙利度胺衍生物的干扰,并为多个生物学过程与 CRBN 之间的联系提供了生化基础。

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