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不同 OTUB1:E2 复合物的交叉调控比较。

Comparison of Cross-Regulation by Different OTUB1:E2 Complexes.

机构信息

Department of Biophysics and Biophysical Chemistry, Johns Hopkins University School of Medicine, 725 North Wolfe Street, Baltimore, Maryland 21210-2185, United States.

出版信息

Biochemistry. 2020 Mar 3;59(8):921-932. doi: 10.1021/acs.biochem.9b00993. Epub 2020 Feb 24.

Abstract

OTUB1 is a highly expressed cysteine protease that specifically cleaves K48-linked polyubiquitin chains. This unique deubiquitinating enzyme (DUB) can bind to a subset of E2 ubiquitin conjugating enzymes, forming complexes in which the two enzymes can regulate one another's activity. OTUB1 can noncatalytically suppress the ubiquitin conjugating activity of its E2 partners by sequestering the charged E2∼Ub thioester and preventing ubiquitin transfer. The same E2 enzymes, when uncharged, can stimulate the DUB activity of OTUB1 , although the importance of OTUB1 stimulation remains unclear. To assess the potential balance between these activities that might occur in cells, we characterized the kinetics and thermodynamics governing the formation and activity of OTUB1:E2 complexes. We show that both stimulation of OTUB1 by E2 enzymes and noncatalytic inhibition of E2 enzymes by OTUB1 occur at physiologically relevant concentrations of both partners. Whereas E2 partners differ in their ability to stimulate OTUB1 activity, we find that this variability is not correlated with the affinity of each E2 for OTUB1. In addition to UBE2N and the UBE2D isoforms, we find that OTUB1 inhibits the polyubiquitination activity of all three UBE2E enzymes, UBE2E1, UBE2E2, and UBE2E3. Interestingly, although OTUB1 also inhibits the auto-monoubiquitination and autopolyubiquitination activity of UBE2E1 and UBE2E2, it is unable to suppress autoubiquitination by UBE2E3. Our quantitative analysis provides a basis for further exploring the biological roles of OTUB1:E2 complexes in cells.

摘要

OTUB1 是一种高度表达的半胱氨酸蛋白酶,它专门切割 K48 连接的多泛素链。这种独特的去泛素化酶(DUB)可以与一组 E2 泛素连接酶结合,形成复合物,其中两种酶可以相互调节对方的活性。OTUB1 可以通过隔离带电荷的 E2∼Ub 硫酯并阻止泛素转移,非催化地抑制其 E2 伴侣的泛素连接酶活性。当不带电荷时,相同的 E2 酶可以刺激 OTUB1 的 DUB 活性,尽管 OTUB1 刺激的重要性仍然不清楚。为了评估这些活性在细胞中可能发生的潜在平衡,我们对控制 OTUB1:E2 复合物形成和活性的动力学和热力学进行了表征。我们表明,E2 酶对 OTUB1 的刺激和 OTUB1 对 E2 酶的非催化抑制都发生在两种伴侣的生理相关浓度下。虽然 E2 伴侣在刺激 OTUB1 活性的能力上有所不同,但我们发现这种可变性与每个 E2 对 OTUB1 的亲和力无关。除了 UBE2N 和 UBE2D 同工型外,我们还发现 OTUB1 抑制所有三种 UBE2E 酶(UBE2E1、UBE2E2 和 UBE2E3)的多泛素化活性。有趣的是,尽管 OTUB1 也抑制 UBE2E1 和 UBE2E2 的自动单泛素化和自多泛素化活性,但它无法抑制 UBE2E3 的自动泛素化。我们的定量分析为进一步探索 OTUB1:E2 复合物在细胞中的生物学作用提供了基础。

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Comparison of Cross-Regulation by Different OTUB1:E2 Complexes.不同 OTUB1:E2 复合物的交叉调控比较。
Biochemistry. 2020 Mar 3;59(8):921-932. doi: 10.1021/acs.biochem.9b00993. Epub 2020 Feb 24.

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