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β-肌营养不良蛋白聚糖受 WWP1 介导的降解和肌营养不良蛋白/utrophin 对 WWP1 的保护之间的平衡调控。

β-dystroglycan is regulated by a balance between WWP1-mediated degradation and protection from WWP1 by dystrophin and utrophin.

机构信息

Department of Biochemistry, College of Life Science & Biotechnology, Yonsei University, Seoul 120-749, Republic of Korea.

Department of Medical Lifesciences, The Catholic University of Korea, Seoul 137-701, Republic of Korea.

出版信息

Biochim Biophys Acta Mol Basis Dis. 2018 Jun;1864(6 Pt A):2199-2213. doi: 10.1016/j.bbadis.2018.04.001. Epub 2018 Apr 7.

Abstract

Dystroglycan is a ubiquitous membrane protein that functions as a mechanical connection between the extracellular matrix and cytoskeleton. In skeletal muscle, dystroglycan plays an indispensable role in regulating muscle regeneration; a malfunction in dystroglycan is associated with muscular dystrophy. The regulation of dystroglycan stability is poorly understood. Here, we report that WWP1, a member of NEDD4 E3 ubiquitin ligase family, promotes ubiquitination and subsequent degradation of β-dystroglycan. Our results indicate that dystrophin and utrophin protect β-dystroglycan from WWP1-mediated degradation by competing with WWP1 for the shared binding site at the cytosolic tail of β-dystroglycan. In addition, we show that a missense mutation (arginine 440 to glutamine) in WWP1-which is known to cause muscular dystrophy in chickens-increases the ubiquitin ligase-mediated ubiquitination of both β-dystroglycan and WWP1. The R440Q missense mutation in WWP1 decreases HECT domain-mediated intramolecular interactions to relieve autoinhibition of the enzyme. Our results provide new insight into the regulation of β-dystroglycan degradation by WWP1 and other Nedd4 family members and improves our understanding of dystroglycan-related disorders.

摘要

肌营养不良蛋白聚糖是一种普遍存在的膜蛋白,作为细胞外基质和细胞骨架之间的机械连接物发挥作用。在骨骼肌中,肌营养不良蛋白聚糖在调节肌肉再生中起着不可或缺的作用;肌营养不良蛋白聚糖的功能障碍与肌肉营养不良有关。肌营养不良蛋白聚糖稳定性的调节机制尚未完全清楚。在这里,我们报告称,NEDD4 E3 泛素连接酶家族的成员 WWPl 促进β-肌营养不良蛋白聚糖的泛素化和随后的降解。我们的结果表明,肌营养不良蛋白和 utrophin 通过与 WWPl 竞争β-肌营养不良蛋白聚糖胞质尾部的共享结合位点,从而保护β-肌营养不良蛋白聚糖免受 WWPl 介导的降解。此外,我们还表明,WWPl 中的一个错义突变(精氨酸 440 突变为谷氨酰胺)——已知会导致鸡的肌肉营养不良——增加了β-肌营养不良蛋白聚糖和 WWPl 的泛素连接酶介导的泛素化。WWPl 中的 R440Q 错义突变会降低 HECT 结构域介导的分子内相互作用,从而解除酶的自身抑制。我们的研究结果为 WWPl 和其他 Nedd4 家族成员对β-肌营养不良蛋白聚糖降解的调节提供了新的见解,并加深了我们对与肌营养不良蛋白聚糖相关的疾病的认识。

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