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PPTC7 通过促进 SCF 介导的 BNIP3 和 NIX 降解来拮抗自噬。

PPTC7 antagonizes mitophagy by promoting BNIP3 and NIX degradation via SCF.

机构信息

Faculty of Medicine, School of Biomedical Sciences, University of Queensland, Brisbane, QLD, Australia.

Department of Biotechnology, School of Biotechnology, Viet Nam National University-International University, Ho Chi Minh City, Vietnam.

出版信息

EMBO Rep. 2024 Aug;25(8):3324-3347. doi: 10.1038/s44319-024-00181-y. Epub 2024 Jul 11.

Abstract

Mitophagy must be carefully regulated to ensure that cells maintain appropriate numbers of functional mitochondria. The SCF ubiquitin ligase complex suppresses mitophagy by controlling the degradation of BNIP3 and NIX mitophagy receptors, and FBXL4 mutations result in mitochondrial disease as a consequence of elevated mitophagy. Here, we reveal that the mitochondrial phosphatase PPTC7 is an essential cofactor for SCF-mediated destruction of BNIP3 and NIX, suppressing both steady-state and induced mitophagy. Disruption of the phosphatase activity of PPTC7 does not influence BNIP3 and NIX turnover. Rather, a pool of PPTC7 on the mitochondrial outer membrane acts as an adaptor linking BNIP3 and NIX to FBXL4, facilitating the turnover of these mitophagy receptors. PPTC7 accumulates on the outer mitochondrial membrane in response to mitophagy induction or the absence of FBXL4, suggesting a homoeostatic feedback mechanism that attenuates high levels of mitophagy. We mapped critical residues required for PPTC7-BNIP3/NIX and PPTC7-FBXL4 interactions and their disruption interferes with both BNIP3/NIX degradation and mitophagy suppression. Collectively, these findings delineate a complex regulatory mechanism that restricts BNIP3/NIX-induced mitophagy.

摘要

自噬必须被仔细调控以确保细胞维持适当数量的有功能线粒体。SCF 泛素连接酶复合物通过控制 BNIP3 和 NIX 自噬受体的降解来抑制自噬,而 FBXL4 突变则导致线粒体疾病,这是自噬升高的结果。在这里,我们揭示了线粒体磷酸酶 PPTC7 是 SCF 介导的 BNIP3 和 NIX 降解的必需辅助因子,抑制了稳态和诱导的自噬。破坏 PPTC7 的磷酸酶活性不会影响 BNIP3 和 NIX 的周转。相反,线粒体外膜上的 PPTC7 池作为一种衔接物,将 BNIP3 和 NIX 与 FBXL4 连接起来,促进这些自噬受体的周转。PPTC7 在自噬诱导或 FBXL4 缺失时在外膜上积累,表明存在一种同型反馈机制,可以减弱高水平的自噬。我们绘制了 PPTC7-BNIP3/NIX 和 PPTC7-FBXL4 相互作用所需的关键残基图谱,并破坏这些残基会干扰 BNIP3/NIX 的降解和自噬抑制。总之,这些发现描绘了一种复杂的调控机制,限制了 BNIP3/NIX 诱导的自噬。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c272/11316107/d4be32242859/44319_2024_181_Fig1_HTML.jpg

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