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从进化(或“线粒体中心”)的角度看待细胞功能和疾病。

An evolutionary, or "Mitocentric" perspective on cellular function and disease.

机构信息

Department of Pathology, Division of Molecular and Cellular Pathology, University of Alabama at Birmingham, Birmingham, AL, 35294, USA.

Department of Nutrition Sciences, University of Alabama at Birmingham, Birmingham, AL, 35294, USA.

出版信息

Redox Biol. 2020 Sep;36:101568. doi: 10.1016/j.redox.2020.101568. Epub 2020 May 26.

Abstract

The incidence of common, metabolic diseases (e.g. obesity, cardiovascular disease, diabetes) with complex genetic etiology has been steadily increasing nationally and globally. While identification of a genetic model that explains susceptibility and risk for these diseases has been pursued over several decades, no clear paradigm has yet been found to disentangle the genetic basis of polygenic/complex disease development. Since the evolution of the eukaryotic cell involved a symbiotic interaction between the antecedents of the mitochondrion and nucleus (which itself is a genetic hybrid), we suggest that this history provides a rational basis for investigating whether genetic interaction and co-evolution of these genomes still exists. We propose that both mitochondrial and Mendelian, or "mito-Mendelian" genetics play a significant role in cell function, and thus disease risk. This paradigm contemplates the natural variation and co-evolution of both mitochondrial and nuclear DNA backgrounds on multiple mitochondrial functions that are discussed herein, including energy production, cell signaling and immune response, which collectively can influence disease development. At the nexus of these processes is the economy of mitochondrial metabolism, programmed by both mitochondrial and nuclear genomes.

摘要

常见代谢性疾病(如肥胖症、心血管疾病、糖尿病)的发病率在国内外呈持续上升趋势,这些疾病具有复杂的遗传病因。几十年来,人们一直在寻找能够解释这些疾病易感性和风险的遗传模型,但尚未找到一种明确的模式来理清多基因/复杂疾病发展的遗传基础。由于真核细胞的进化涉及线粒体和细胞核前身之间的共生相互作用(细胞核本身就是一种遗传杂种),我们认为这段历史为研究这些基因组的遗传相互作用和共同进化是否仍然存在提供了合理的依据。我们提出,线粒体遗传学和孟德尔遗传学,或“线粒体-孟德尔遗传学”,都在细胞功能中发挥重要作用,从而影响疾病风险。这一范式考虑了线粒体和核 DNA 背景的自然变异和共同进化对本文讨论的多种线粒体功能的影响,包括能量产生、细胞信号转导和免疫反应,这些功能共同影响疾病的发展。这些过程的交汇点是由线粒体和核基因组共同编程的线粒体代谢的经济性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8109/7281786/8eb99cd7d8f9/gr1.jpg

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