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CLEC16A-RNF41 线粒体自噬复合物内的相互调节平衡依赖于一个固有无序的蛋白质区域。

Reciprocal regulatory balance within the CLEC16A-RNF41 mitophagy complex depends on an intrinsically disordered protein region.

机构信息

Department of Internal Medicine and Division of Metabolism, Endocrinology & Diabetes, University of Michigan, Ann Arbor, Michigan, USA; Program in Cellular and Molecular Biology, University of Michigan, Ann Arbor, Michigan, USA.

Department of Internal Medicine and Division of Metabolism, Endocrinology & Diabetes, University of Michigan, Ann Arbor, Michigan, USA.

出版信息

J Biol Chem. 2023 Apr;299(4):103057. doi: 10.1016/j.jbc.2023.103057. Epub 2023 Feb 22.

Abstract

CLEC16A is an E3 ubiquitin ligase that regulates mitochondrial quality control through mitophagy and is associated with over 20 human diseases. CLEC16A forms a complex with another E3 ligase, RNF41, and a ubiquitin-specific peptidase, USP8; however, regions that regulate CLEC16A activity or the assembly of the tripartite mitophagy regulatory complex are unknown. Here, we report that CLEC16A contains an internal intrinsically disordered protein region (IDPR) that is crucial for CLEC16A function and turnover. IDPRs lack a fixed secondary structure and possess emerging yet still equivocal roles in protein stability, interactions, and enzymatic activity. We find that the internal IDPR of CLEC16A is crucial for its degradation. CLEC16A turnover was promoted by RNF41, which binds and acts upon the internal IDPR to destabilize CLEC16A. Loss of this internal IDPR also destabilized the ubiquitin-dependent tripartite CLEC16A-RNF41-USP8 complex. Finally, the presence of an internal IDPR within CLEC16A was confirmed using NMR and CD spectroscopy. Together, our studies reveal that an IDPR is essential to control the reciprocal regulatory balance between CLEC16A and RNF41, which could be targeted to improve mitochondrial health in disease.

摘要

CLEC16A 是一种 E3 泛素连接酶,通过线粒体自噬来调节线粒体质量控制,与 20 多种人类疾病有关。CLEC16A 与另一种 E3 连接酶 RNF41 和一个泛素特异性肽酶 USP8 形成复合物;然而,调节 CLEC16A 活性或三聚体线粒体自噬调节复合物组装的区域尚不清楚。在这里,我们报告 CLEC16A 包含一个内部无序蛋白区域(IDPR),这对于 CLEC16A 的功能和周转至关重要。IDPRs 缺乏固定的二级结构,并且在蛋白质稳定性、相互作用和酶活性方面具有新兴但仍不确定的作用。我们发现 CLEC16A 的内部 IDPR 对于其降解至关重要。RNF41 促进了 CLEC16A 的周转,它结合并作用于内部 IDPR 以破坏 CLEC16A 的稳定性。失去这个内部 IDPR 也破坏了依赖泛素的三聚体 CLEC16A-RNF41-USP8 复合物的稳定性。最后,使用 NMR 和 CD 光谱证实了 CLEC16A 内部存在 IDPR。总之,我们的研究表明,IDPR 对于控制 CLEC16A 和 RNF41 之间的相互调节平衡至关重要,这可能成为改善疾病中线粒体健康的靶向目标。

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Protein disorder in the regulatory control of mitophagy.线粒体自噬调节控制中的蛋白质紊乱。
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