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哺乳类精子中线粒体-细胞骨架界面处的保守超分子蛋白阵列的细胞内结构。

In-cell structures of conserved supramolecular protein arrays at the mitochondria-cytoskeleton interface in mammalian sperm.

机构信息

Bijvoet Centre for Biomolecular Research, Utrecht University, Utrecht 3584 CH, The Netherlands.

The Division of Structural Biology, Wellcome Centre for Human Genetics, The University of Oxford, Oxford OX3 7BN, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 2021 Nov 9;118(45). doi: 10.1073/pnas.2110996118.

Abstract

Mitochondria-cytoskeleton interactions modulate cellular physiology by regulating mitochondrial transport, positioning, and immobilization. However, there is very little structural information defining mitochondria-cytoskeleton interfaces in any cell type. Here, we use cryofocused ion beam milling-enabled cryoelectron tomography to image mammalian sperm, where mitochondria wrap around the flagellar cytoskeleton. We find that mitochondria are tethered to their neighbors through intermitochondrial linkers and are anchored to the cytoskeleton through ordered arrays on the outer mitochondrial membrane. We use subtomogram averaging to resolve in-cell structures of these arrays from three mammalian species, revealing they are conserved across species despite variations in mitochondrial dimensions and cristae organization. We find that the arrays consist of boat-shaped particles anchored on a network of membrane pores whose arrangement and dimensions are consistent with voltage-dependent anion channels. Proteomics and in-cell cross-linking mass spectrometry suggest that the conserved arrays are composed of glycerol kinase-like proteins. Ordered supramolecular assemblies may serve to stabilize similar contact sites in other cell types in which mitochondria need to be immobilized in specific subcellular environments, such as in muscles and neurons.

摘要

线粒体-细胞骨架相互作用通过调节线粒体运输、定位和固定来调节细胞生理。然而,对于任何细胞类型,很少有结构信息可以定义线粒体-细胞骨架界面。在这里,我们使用冷冻聚焦离子束研磨技术实现的冷冻电子断层成像来对哺乳动物精子进行成像,在精子中,线粒体环绕着鞭毛细胞骨架。我们发现线粒体通过线粒体间连接物与相邻线粒体相连,并通过线粒体外膜上有序排列的结构锚定在细胞骨架上。我们使用亚断层平均法从三个哺乳动物物种中解析这些结构的细胞内结构,发现尽管线粒体尺寸和嵴组织存在差异,但这些结构在物种间是保守的。我们发现,这些排列由船形颗粒组成,这些颗粒锚定在一个膜孔网络上,其排列和尺寸与电压依赖性阴离子通道一致。蛋白质组学和细胞内交联质谱分析表明,这些保守的排列由甘油激酶样蛋白组成。有序的超分子组装可能有助于稳定其他需要在特定亚细胞环境中固定线粒体的细胞类型中的类似接触位点,例如肌肉和神经元。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/855c/8609336/4c5b5688a5fa/pnas.202110996fig01.jpg

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