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钙联蛋白改变线粒体动力学并影响细胞形态。

Parvalbumin alters mitochondrial dynamics and affects cell morphology.

机构信息

Unit of Anatomy, Section of Medicine, University of Fribourg, Route Albert-Gockel 1, 1700, Fribourg, Switzerland.

Department of Pharmacology, Institute of Biomedicine and Translational Medicine, University of Tartu, 50411, Tartu, Estonia.

出版信息

Cell Mol Life Sci. 2018 Dec;75(24):4643-4666. doi: 10.1007/s00018-018-2921-x. Epub 2018 Sep 25.

Abstract

The Ca-binding protein parvalbumin (PV) and mitochondria play important roles in Ca signaling, buffering and sequestration. Antagonistic regulation of PV and mitochondrial volume is observed in in vitro and in vivo model systems. Changes in mitochondrial morphology, mitochondrial volume and dynamics (fusion, fission, mitophagy) resulting from modulation of PV were investigated in MDCK epithelial cells with stable overexpression/downregulation of PV. Increased PV levels resulted in smaller, roundish cells and shorter mitochondria, the latter phenomenon related to reduced fusion rates and decreased expression of genes involved in mitochondrial fusion. PV-overexpressing cells displayed increased mitophagy, a likely cause for the decreased mitochondrial volumes and the smaller overall cell size. Cells showed lower mobility in vitro, paralleled by reduced protrusions. Constitutive PV down-regulation in PV-overexpressing cells reverted mitochondrial morphology and fractional volume to the state present in control MDCK cells, resulting from increased mitochondrial movement and augmented fusion rates. PV-modulated, bi-directional and reversible mitochondrial dynamics are key to regulation of mitochondrial volume.

摘要

钙结合蛋白 parvalbumin(PV)和线粒体在钙信号转导、缓冲和隔离中发挥重要作用。在体外和体内模型系统中观察到 PV 和线粒体体积的拮抗调节。通过稳定过表达/下调 PV 来研究 MDCK 上皮细胞中 PV 调节导致的线粒体形态、线粒体体积和动力学(融合、裂变、噬线粒体)的变化。PV 水平升高导致细胞变小、呈圆形,线粒体变短,后一种现象与融合率降低和参与线粒体融合的基因表达降低有关。过表达 PV 的细胞表现出更多的噬线粒体现象,这可能是线粒体体积减小和整体细胞体积减小的原因。细胞在体外的迁移能力较低,与之平行的是突起减少。在过表达 PV 的细胞中,PV 的组成性下调使线粒体形态和分数体积恢复到对照 MDCK 细胞的状态,这是由于线粒体运动增加和融合率增加所致。PV 调节的、双向的和可逆的线粒体动力学是调节线粒体体积的关键。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a7f/11105472/f5deda8a2813/18_2018_2921_Fig1_HTML.jpg

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