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依赖于视神经萎缩蛋白1(Opa1)的线粒体嵴重塑结构

architecture of Opa1-dependent mitochondrial cristae remodeling.

作者信息

Fry Michelle Y, Navarro Paula P, Hakim Pusparanee, Ananda Virly Y, Qin Xingping, Landoni Juan C, Rath Sneha, Inde Zintis, Lugo Camila Makhlouta, Luce Bridget E, Ge Yifan, McDonald Julie L, Ali Ilzat, Ha Leillani L, Kleinstiver Benjamin P, Chan David C, Sarosiek Kristopher A, Chao Luke H

机构信息

Department of Molecular Biology, Massachusetts General Hospital, Boston, USA.

Department of Genetics, Blavatnik Institute, Harvard Medical School, Boston, USA.

出版信息

bioRxiv. 2023 Nov 9:2023.01.16.524176. doi: 10.1101/2023.01.16.524176.

Abstract

Cristae membrane state plays a central role in regulating mitochondrial function and cellular metabolism. The protein Optic atrophy 1 (Opa1) is an important crista remodeler that exists as two forms in the mitochondrion, a membrane-anchored long form (l-Opa1) and a processed short form (s-Opa1). The mechanisms for how Opa1 influences cristae shape have remained unclear due to lack of native three-dimensional views of cristae. We perform cryo-electron tomography of cryo-focused ion beam milled mouse embryonic fibroblasts with defined Opa1 states to understand how each form of Opa1 influences cristae architecture. In our tomograms, we observe a variety of cristae shapes with distinct trends dependent on s-Opa1:l-Opa1 balance. Increased l-Opa1 levels promote cristae stacking and elongated mitochondria while increased s-Opa1 levels correlated with irregular cristae packing and round mitochondria shape. Functional assays indicate a role for l-Opa1 in wild-type apoptotic and calcium handling responses, and compromised respiratory function under Opa1 imbalance. In summary, we provide three-dimensional visualization of cristae architecture to reveal relationships between mitochondrial ultrastructure and cellular function dependent on Opa1-mediated membrane remodeling.

摘要

嵴膜状态在调节线粒体功能和细胞代谢中起着核心作用。视神经萎缩蛋白1(Opa1)是一种重要的嵴重塑蛋白,在线粒体中以两种形式存在,一种是膜锚定的长形式(l-Opa1),另一种是加工后的短形式(s-Opa1)。由于缺乏嵴的天然三维视图,Opa1如何影响嵴形状的机制仍不清楚。我们对具有特定Opa1状态的经低温聚焦离子束研磨的小鼠胚胎成纤维细胞进行了冷冻电子断层扫描,以了解每种形式的Opa1如何影响嵴结构。在我们的断层扫描图中,我们观察到了各种嵴形状,其具有依赖于s-Opa1:l-Opa1平衡的不同趋势。l-Opa1水平的增加促进嵴的堆叠和线粒体的延长,而s-Opa1水平的增加与不规则的嵴堆积和圆形线粒体形状相关。功能分析表明l-Opa1在野生型细胞凋亡和钙处理反应中起作用,并且在Opa1失衡情况下呼吸功能受损。总之,我们提供了嵴结构的三维可视化,以揭示线粒体超微结构与依赖于Opa1介导的膜重塑的细胞功能之间的关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47d0/10642633/6b0769d9492d/nihpp-2023.01.16.524176v5-f0001.jpg

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