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泛素载体蛋白的功能异质性。

Functional heterogeneity of ubiquitin carrier proteins.

作者信息

Pickart C M, Rose I A

出版信息

J Biol Chem. 1985 Feb 10;260(3):1573-81.

PMID:2981864
Abstract

In the formation of covalent ubiquitin-protein conjugates that occurs during ATP- and ubiquitin-dependent proteolysis in reticulocyte extracts, ubiquitin (Ub) is activated to a thiol ester of the activating enzyme E1 (via the Ub carboxyl terminus), transferred to low-molecular weight "carrier proteins" (E2s) to form E2-Ub thiol esters, and then transferred by a third enzyme (E3) to amino groups on target proteins (Hershko, A., Heller, H., Elias, S., and Ciechanover, A. (1983) J. Biol. Chem. 258, 8206-8214). We report here the fractionation of Ub carrier proteins by molecular weight, and their characterization with respect to several activities. The Ub thiol ester forms of at least four of the five E2s catalyze Ub transfer to a number of small amines, in a reaction that does not require E3; only primary amines on primary carbons can serve as Ub acceptors. E3-independent Ub transfer to the small, basic proteins histones H2A and H2B, and cytochrome c, is also observed. The Ub thiol ester forms of two of the E2s were found to catalyze Ub transfer to cytochrome c. Only a single E2 functions in E3-dependent conjugate formation (with the substrates creatine phosphokinase, reduced/carboxymethylated serum albumin, and oxidized RNase) and in E3-dependent protein breakdown (with the substrate serum albumin). This E2 has a subunit molecular weight of 14,000 and migrates as a dimer on Sephacryl 200.

摘要

在网织红细胞提取物中依赖ATP和泛素的蛋白质水解过程中发生的共价泛素-蛋白质缀合物形成过程中,泛素(Ub)被激活为激活酶E1的硫酯(通过Ub羧基末端),转移到低分子量“载体蛋白”(E2s)以形成E2-Ub硫酯,然后由第三种酶(E3)转移到靶蛋白的氨基上(赫什科,A.,赫勒,H.,埃利亚斯,S.,和齐查诺弗,A.(1983年)《生物化学杂志》258,8206 - 8214)。我们在此报告按分子量对Ub载体蛋白进行分级分离,并对其几种活性进行表征。五种E2s中至少四种的Ub硫酯形式催化Ub转移到多种小胺上,此反应不需要E3;只有伯碳上的伯胺可作为Ub受体。还观察到不依赖E3的Ub转移到小的碱性蛋白组蛋白H2A和H2B以及细胞色素c上。发现两种E2的Ub硫酯形式催化Ub转移到细胞色素c上。只有一种E2在依赖E3的缀合物形成(与底物肌酸磷酸激酶、还原/羧甲基化血清白蛋白和氧化核糖核酸酶)以及依赖E3的蛋白质分解(与底物血清白蛋白)中起作用。这种E2的亚基分子量为14,000,在Sephacryl 200上以二聚体形式迁移。

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