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MID1 E3 连接酶催化蛋白磷酸酶 2A(PP2A)调节亚基 Alpha4(α4)的多泛素化:MID1 介导的 PP2A 调节的新见解。

The MID1 E3 ligase catalyzes the polyubiquitination of Alpha4 (α4), a regulatory subunit of protein phosphatase 2A (PP2A): novel insights into MID1-mediated regulation of PP2A.

机构信息

From the Department of Chemistry, George Washington University, Washington, D. C. 20052.

the Center for Developmental Biology and Regenerative Medicine, Seattle Children's Research Institute and.

出版信息

J Biol Chem. 2013 Jul 19;288(29):21341-21350. doi: 10.1074/jbc.M113.481093. Epub 2013 Jun 5.

Abstract

Alpha4 (α4) is a key regulator of protein phosphatase 2A (PP2A) and mTOR in steps essential for cell-cycle progression. α4 forms a complex with PP2A and MID1, a microtubule-associated ubiquitin E3 ligase that facilitates MID1-dependent regulation of PP2A and the dephosphorylation of MID1 by PP2A. Ectopic overexpression of α4 is associated with hepatocellular carcinomas, breast cancer, and invasive adenocarcinomas. Here, we provide data suggesting that α4 is regulated by ubiquitin-dependent degradation mediated by MID1. In cells stably expressing a dominant-negative form of MID1, significantly elevated levels of α4 were observed. Treatment of cells with the specific proteasome inhibitor, lactacystin, resulted in a 3-fold increase in α4 in control cells and a similar level in mutant cells. Using in vitro assays, individual MID1 E3 domains facilitated monoubiquitination of α4, whereas full-length MID1 as well as RING-Bbox1 and RING-Bbox1-Bbox2 constructs catalyzed its polyubiquitination. In a novel non-biased functional screen, we identified a leucine to glutamine substitution at position 146 within Bbox1 that abolished MID1-α4 interaction and the subsequent polyubiquitination of α4, indicating that direct binding to Bbox1 was necessary for the polyubiquitination of α4. The mutant had little impact on the RING E3 ligase functionality of MID1. Mass spectrometry data confirmed Western blot analysis that ubiquitination of α4 occurs only within the last 105 amino acids. These novel findings identify a new role for MID1 and a mechanism of regulation of α4 that is likely to impact the stability and activity level of PP2Ac.

摘要

α4(alpha4)是蛋白磷酸酶 2A(PP2A)和 mTOR 的关键调节剂,在细胞周期进程中起着至关重要的作用。α4 与 PP2A 和 MID1 形成复合物,MID1 是一种微管相关的泛素 E3 连接酶,可促进 MID1 对 PP2A 的调节以及 PP2A 对 MID1 的去磷酸化。α4 的异位过表达与肝细胞癌、乳腺癌和侵袭性腺癌有关。在这里,我们提供的数据表明,α4 受 MID1 介导的泛素依赖性降解调节。在稳定表达显性失活形式的 MID1 的细胞中,观察到α4 的水平显著升高。用特异性蛋白酶体抑制剂乳胞素处理细胞,导致对照细胞中α4 增加 3 倍,而突变细胞中则增加类似水平。使用体外测定法,单个 MID1 E3 结构域促进α4 的单泛素化,而全长 MID1 以及 RING-Bbox1 和 RING-Bbox1-Bbox2 构建体催化其多泛素化。在一项新的无偏功能筛选中,我们在 Bbox1 内第 146 位发现了一个亮氨酸到谷氨酰胺的取代,该取代消除了 MID1-α4 相互作用以及随后的α4 多泛素化,表明直接结合 Bbox1 对于α4 的多泛素化是必需的。突变体对 MID1 的 RING E3 连接酶功能几乎没有影响。质谱数据证实了 Western blot 分析,即只有在最后 105 个氨基酸内才发生α4 的泛素化。这些新发现确定了 MID1 的新作用和α4 调节的机制,可能会影响 PP2Ac 的稳定性和活性水平。

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