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蛋白质 SUMOylation 促进 cAMP 非依赖性 EPAC1 的激活。

Protein SUMOylation promotes cAMP-independent EPAC1 activation.

机构信息

Department of Integrative Biology and Pharmacology, The University of Texas Health Science Center, Houston, TX, USA.

Texas Therapeutics Institute, The University of Texas Health Science Center, Houston, TX, USA.

出版信息

Cell Mol Life Sci. 2024 Jul 4;81(1):283. doi: 10.1007/s00018-024-05315-y.

Abstract

Protein SUMOylation is a prevalent stress-response posttranslational modification crucial for maintaining cellular homeostasis. Herein, we report that protein SUMOylation modulates cellular signaling mediated by cAMP, an ancient and universal stress-response second messenger. We identify K561 as a primary SUMOylation site in exchange protein directly activated by cAMP (EPAC1) via site-specific mapping of SUMOylation using mass spectrometry. Sequence and site-directed mutagenesis analyses reveal that a functional SUMO-interacting motif in EPAC1 is required for the binding of SUMO-conjugating enzyme UBC9, formation of EPAC1 nuclear condensate, and EPAC1 cellular SUMOylation. Heat shock-induced SUMO modification of EPAC1 promotes Rap1/2 activation in a cAMP-independent manner. Structural modeling and molecular dynamics simulation studies demonstrate that SUMO substituent on K561 of EPAC1 promotes Rap1 interaction by increasing the buried surface area between the SUMOylated receptor and its effector. Our studies identify a functional SUMOylation site in EPAC1 and unveil a novel mechanism in which SUMOylation of EPAC1 leads to its autonomous activation. The findings of SUMOylation-mediated activation of EPAC1 not only provide new insights into our understanding of cellular regulation of EPAC1 but also will open up a new field of experimentation concerning the cross-talk between cAMP/EPAC1 signaling and protein SUMOylation, two major cellular stress response pathways, during cellular homeostasis.

摘要

蛋白质 SUMO 化修饰是一种普遍存在的应激反应翻译后修饰,对于维持细胞内稳态至关重要。本文报道了蛋白质 SUMO 化修饰调节细胞信号转导,该信号转导由 cAMP 介导,cAMP 是一种古老而普遍的应激反应第二信使。我们通过质谱法对 SUMO 化进行特异性定位,鉴定出 K561 是环磷酸腺苷(cAMP)直接激活交换蛋白(EPAC1)的主要 SUMO 化位点。序列和定点突变分析表明,EPAC1 中的一个功能性 SUMO 相互作用基序是 SUMO 连接酶 UBC9 结合、EPAC1 核凝聚形成和 EPAC1 细胞 SUMO 化所必需的。热休克诱导的 EPAC1 SUMO 修饰以 cAMP 非依赖的方式促进 Rap1/2 的激活。结构建模和分子动力学模拟研究表明,EPAC1 上 K561 的 SUMO 取代基通过增加 SUMO 化受体与其效应物之间的埋藏表面积来促进 Rap1 相互作用。我们的研究确定了 EPAC1 中的一个功能性 SUMO 化位点,并揭示了一种新的机制,即 EPAC1 的 SUMO 化导致其自主激活。EPAC1 的 SUMO 化介导的激活的发现不仅为我们理解 EPAC1 的细胞调控提供了新的见解,而且还将开辟一个新的实验领域,涉及细胞内稳态期间 cAMP/EPAC1 信号转导和蛋白质 SUMO 化这两个主要的细胞应激反应途径之间的串扰。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/15a1/11335207/389bc9b9d5ac/18_2024_5315_Fig1_HTML.jpg

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