The interplay between selective types of (macro)autophagy: Mitophagy and xenophagy.

3区 生物学 Q1 Biochemistry, Genetics and Molecular Biology
Teresa Rubio-Tomás, Aggeliki Sotiriou, Nektarios Tavernarakis
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引用次数: 3

Abstract

Autophagy is a physiological response, activated by a myriad of endogenous and exogenous cues, including DNA damage, perturbation of proteostasis, depletion of nutrients or oxygen and pathogen infection. Upon sensing those stimuli, cells employ multiple non-selective and selective autophagy pathways to promote fitness and survival. Importantly, there are a variety of selective types of autophagy. In this review we will focus on autophagy of bacteria (xenophagy) and autophagy of mitochondria (mitophagy). We provide a brief introduction to bulk autophagy, as well as xenophagy and mitophagy, highlighting their common molecular factors. We also describe the role of xenophagy and mitophagy in the detection and elimination of pathogens by the immune system and the adaptive mechanisms that some pathogens have developed through evolution to escape the host autophagic response. Finally, we summarize the recent articles (from the last five years) linking bulk autophagy with xenophagy and/or mitophagy in the context on developmental biology, cancer and metabolism.

选择性(宏观)自噬类型之间的相互作用:有丝自噬和异种自噬。
自噬是一种生理反应,由无数内源性和外源性线索激活,包括DNA损伤,蛋白质平衡紊乱,营养物质或氧气消耗和病原体感染。在感知这些刺激后,细胞采用多种非选择性和选择性自噬途径来促进适应性和生存。重要的是,自噬有多种选择性类型。本文主要从细菌自噬(xenophagy)和线粒体自噬(mitophagy)两方面进行综述。我们简要介绍了大量自噬,以及异种自噬和有丝自噬,重点介绍了它们的共同分子因素。我们还描述了异种自噬和有丝自噬在免疫系统检测和消除病原体中的作用,以及一些病原体通过进化而形成的逃避宿主自噬反应的适应机制。最后,我们总结了最近五年来在发育生物学、癌症和代谢方面将大量自噬与异种自噬和/或有丝自噬联系起来的文章。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International review of cell and molecular biology
International review of cell and molecular biology BIOCHEMISTRY & MOLECULAR BIOLOGY-CELL BIOLOGY
CiteScore
7.70
自引率
0.00%
发文量
67
审稿时长
>12 weeks
期刊介绍: International Review of Cell and Molecular Biology presents current advances and comprehensive reviews in cell biology-both plant and animal. Articles address structure and control of gene expression, nucleocytoplasmic interactions, control of cell development and differentiation, and cell transformation and growth. Authored by some of the foremost scientists in the field, each volume provides up-to-date information and directions for future research.
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