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PINK1 通过调控外周小管连接来控制 RTN3L 介导的内质网自噬。

PINK1 controls RTN3L-mediated ER autophagy by regulating peripheral tubule junctions.

机构信息

Department of Cellular and Molecular Medicine, University of California at San Diego, La Jolla, CA, USA.

出版信息

J Cell Biol. 2024 Dec 2;223(12). doi: 10.1083/jcb.202407193. Epub 2024 Nov 18.

Abstract

Here, we report that the RTN3L-SEC24C endoplasmic reticulum autophagy (ER-phagy) receptor complex, the CUL3KLHL12 E3 ligase that ubiquitinates RTN3L, and the FIP200 autophagy initiating protein, target mutant proinsulin (Akita) condensates for lysosomal delivery at ER tubule junctions. When delivery was blocked, Akita condensates accumulated in the ER. In exploring the role of tubulation in these events, we unexpectedly found that loss of the Parkinson's disease protein, PINK1, reduced peripheral tubule junctions and blocked ER-phagy. Overexpression of the PINK1 kinase substrate, DRP1, increased junctions, reduced Akita condensate accumulation, and restored lysosomal delivery in PINK1-depleted cells. DRP1 is a dual-functioning protein that promotes ER tubulation and severs mitochondria at ER-mitochondria contact sites. DRP1-dependent ER tubulating activity was sufficient for suppression. Supporting these findings, we observed PINK1 associating with ER tubules. Our findings show that PINK1 shapes the ER to target misfolded proinsulin for RTN3L-SEC24C-mediated macro-ER-phagy at defined ER sites called peripheral junctions. These observations may have important implications for understanding Parkinson's disease.

摘要

在这里,我们报告 RTN3L-SEC24C 内质网自噬 (ER-phagy) 受体复合物、泛素化 RTN3L 的 CUL3KLHL12 E3 连接酶和 FIP200 自噬起始蛋白将突变的胰岛素原 (Akita) 凝聚物靶向溶酶体在 ER 小管连接处进行溶酶体递呈。当递呈被阻断时,Akita 凝聚物在 ER 中积累。在探索小管化在这些事件中的作用时,我们出人意料地发现帕金森病蛋白 PINK1 的缺失减少了外围小管连接处并阻断了 ER-phagy。PINK1 激酶底物 DRP1 的过表达增加了连接处,减少了 Akita 凝聚物的积累,并恢复了 PINK1 耗尽细胞中的溶酶体递呈。DRP1 是一种具有双重功能的蛋白质,可促进 ER 小管化并在 ER-线粒体接触部位切断线粒体。DRP1 依赖性 ER 小管化活性足以抑制。支持这些发现,我们观察到 PINK1 与 ER 小管相关联。我们的研究结果表明,PINK1 塑造 ER,以将错误折叠的胰岛素原靶向 RTN3L-SEC24C 介导的宏观 ER-phagy 在称为外围连接处的特定 ER 部位。这些观察结果可能对理解帕金森病具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d5c/11575451/df8820a4d51b/jcb_202407193_fig1.jpg

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