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RING E3催化的E2自泛素化减弱Ube2E泛素结合酶的活性。

RING E3-Catalyzed E2 Self-Ubiquitination Attenuates the Activity of Ube2E Ubiquitin-Conjugating Enzymes.

作者信息

Banka Prerana Agarwal, Behera Adaitya Prasad, Sarkar Sayani, Datta Ajit B

机构信息

Department of Biochemistry, Bose Institute, P-1/12 CIT Scheme VIIM, Kolkata 700054, India.

Department of Biochemistry, Bose Institute, P-1/12 CIT Scheme VIIM, Kolkata 700054, India.

出版信息

J Mol Biol. 2015 Jul 3;427(13):2290-304. doi: 10.1016/j.jmb.2015.04.011. Epub 2015 May 7.

Abstract

Ubiquitination of a target protein is accomplished through sequential actions of the E1, E2s, and the E3s. E2s dictate the modification topology while E3 ligases confer substrate specificity and recruit the cognate E2. Human genome codes for ~35 different E2 proteins; all of which contain the characteristic ubiquitin-conjugating UBC core domain sufficient for catalysis. Many of these E2 enzymes also have N- or C-terminal extensions; roles of which are not very well understood. We show that the N-terminal extension of Ube2E1 undergoes intramolecular auto-ubiquitination. This self-ubiquitination activity is enhanced in the presence of interacting RING E3 ligases and results in a progressive attenuation of the E2 activity toward substrate/E3 modification. We also find that the N-terminal ubiquitination sites are conserved in all the three Ube2Es and replacing them with arginine renders all three full-length Ube2Es equally active as their core UBC domains. Based on these results, we propose that E3-catalyzed self-ubiquitination acts as a key regulatory mechanism that controls the activity of Ube2E class of ubiquitin E2s.

摘要

靶蛋白的泛素化是通过E1、E2和E3的顺序作用来完成的。E2决定修饰拓扑结构,而E3连接酶赋予底物特异性并招募同源E2。人类基因组编码约35种不同的E2蛋白;所有这些蛋白都含有足以进行催化的特征性泛素结合UBC核心结构域。其中许多E2酶还具有N端或C端延伸;其作用尚不太清楚。我们表明,Ube2E1的N端延伸会发生分子内自泛素化。在相互作用的RING E3连接酶存在下,这种自泛素化活性会增强,并导致E2对底物/E3修饰的活性逐渐减弱。我们还发现,所有三种Ube2E中的N端泛素化位点都是保守的,用精氨酸取代它们会使所有三种全长Ube2E与它们的核心UBC结构域具有同等活性。基于这些结果,我们提出E3催化的自泛素化作为一种关键的调节机制,控制泛素E2的Ube2E类的活性。

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