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低氧诱导因子1α依赖性线粒体自噬促进心肌成纤维细胞分化。

HIF1α-dependent mitophagy facilitates cardiomyoblast differentiation.

作者信息

Zhao Jin-Feng, Rodger Catherine E, Allen George F G, Weidlich Simone, Ganley Ian G

机构信息

MRC Protein Phosphorylation and Ubiquitylation Unit, School of Life Sciences, University of Dundee, Dundee, DD1 5EH, UK.

Equal contribution.

出版信息

Cell Stress. 2020 Mar 4;4(5):99-113. doi: 10.15698/cst2020.05.220.

DOI:10.15698/cst2020.05.220
PMID:32420530
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7212530/
Abstract

Mitophagy is thought to play a key role in eliminating damaged mitochondria, with diseases such as cancer and neurodegeneration exhibiting defects in this process. Mitophagy is also involved in cell differentiation and maturation, potentially through modulating mitochondrial metabolic reprogramming. Here we examined mitophagy that is induced upon iron chelation and found that the transcriptional activity of HIF1α, in part through upregulation of BNIP3 and NIX, is an essential mediator of this pathway in SH-SY5Y cells. In contrast, HIF1α is dispensable for mitophagy occurring upon mitochondrial depolarisation. To examine the role of this pathway in a metabolic reprogramming and differentiation context, we utilised the H9c2 cell line model of cardiomyocyte maturation. During differentiation of these cardiomyoblasts, mitophagy increased and required HIF1α-dependent upregulation of NIX. Though HIF1α was essential for expression of key cardiomyocyte markers, mitophagy was not directly required. However, enhancing mitophagy through NIX overexpression, accelerated marker gene expression. Taken together, our findings provide a molecular link between mitophagy signalling and cardiomyocyte differentiation and suggest that although mitophagy may not be essential , it plays a critical role in maintaining mitochondrial integrity during this energy demanding process.

摘要

线粒体自噬被认为在清除受损线粒体中起关键作用,癌症和神经退行性疾病等病症在此过程中表现出缺陷。线粒体自噬还参与细胞分化和成熟,可能是通过调节线粒体代谢重编程来实现。在此,我们研究了铁螯合诱导的线粒体自噬,发现HIF1α的转录活性部分通过上调BNIP3和NIX,是SH-SY5Y细胞中该途径的重要介导因子。相比之下,HIF1α对于线粒体去极化时发生的线粒体自噬是可有可无的。为了研究该途径在代谢重编程和分化背景下的作用,我们利用了心肌细胞成熟的H9c2细胞系模型。在这些成心肌细胞分化过程中,线粒体自噬增加且需要HIF1α依赖的NIX上调。虽然HIF1α对于关键心肌细胞标志物的表达至关重要,但线粒体自噬并非直接必需。然而,通过NIX过表达增强线粒体自噬可加速标志物基因表达。综上所述,我们的研究结果提供了线粒体自噬信号与心肌细胞分化之间的分子联系,并表明虽然线粒体自噬可能不是必需的,但它在这个能量需求过程中维持线粒体完整性方面起着关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c266/7212530/5f559be13a15/ces-04-099-g005.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c266/7212530/5f559be13a15/ces-04-099-g005.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c266/7212530/5f559be13a15/ces-04-099-g005.jpg

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TAMM41 is required for heart valve differentiation via regulation of PINK-PARK2 dependent mitophagy.TAMM41 通过调节 PINK-PARK2 依赖性线粒体自噬对于心脏瓣膜分化是必需的。
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PPTC7 antagonizes mitophagy by promoting BNIP3 and NIX degradation via SCF.PPTC7 通过促进 SCF 介导的 BNIP3 和 NIX 降解来拮抗自噬。
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