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监测自噬和线粒体质量的方法:在癌症、神经退行性疾病和心血管疾病中的意义。

Methods to Monitor Mitophagy and Mitochondrial Quality: Implications in Cancer, Neurodegeneration, and Cardiovascular Diseases.

机构信息

Department of Medical Sciences, Section of Pathology, Oncology and Experimental Biology, Laboratory for Technologies of Advanced Therapies (LTTA), University of Ferrara, Ferrara, Italy.

Department of Clinical and Molecular Sciences, Marche Polytechnic University, Ancona, Italy.

出版信息

Methods Mol Biol. 2021;2310:113-159. doi: 10.1007/978-1-0716-1433-4_9.

Abstract

Mitochondria are dynamic organelles that participate in a broad array of molecular functions within the cell. They are responsible for maintaining the appropriate energetic levels and control the cellular homeostasis throughout the generation of intermediary metabolites. Preserving a healthy and functional mitochondrial population is of fundamental importance throughout the life of the cells under pathophysiological conditions. Hence, cells have evolved fine-tuned mechanisms of quality control that help to preserve the right amount of functional mitochondria to meet the demand of the cell. The specific recycling of mitochondria by autophagy, termed mitophagy, represents the primary contributor to mitochondrial quality control. During this process, damaged or unnecessary mitochondria are recognized and selectively degraded. In the past few years, the knowledge in mitophagy has seen rapid progress, and a growing body of evidence confirms that mitophagy holds a central role in controlling cellular functions and the progression of various human diseases.In this chapter, we will discuss the pathophysiological roles of mitophagy and provide a general overview of the current methods used to monitor and quantify mitophagy. We will also outline the main established approaches to investigate the mitochondrial function, metabolism, morphology, and protein damage.

摘要

线粒体是具有动态特征的细胞器,参与细胞内广泛的分子功能。它们负责维持适当的能量水平,并在中间代谢产物生成过程中控制细胞内环境稳定。在病理生理条件下,保持健康和功能正常的线粒体群体对于细胞的整个生命周期至关重要。因此,细胞已经进化出精细的质量控制机制,有助于维持适量的功能线粒体以满足细胞的需求。通过自噬特异性回收线粒体,即自噬体吞噬,是线粒体质量控制的主要贡献者。在此过程中,受损或不必要的线粒体被识别并选择性降解。在过去的几年中,自噬体吞噬的相关知识取得了快速进展,越来越多的证据证实自噬体吞噬在控制细胞功能和各种人类疾病的进展中起着核心作用。在本章中,我们将讨论自噬体吞噬的病理生理作用,并提供监测和量化自噬体吞噬的当前方法的概述。我们还将概述研究线粒体功能、代谢、形态和蛋白质损伤的主要既定方法。

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