线粒体
生物
选择性氧化酶
呼吸链
细胞生物学
生物化学
产热
ATP合酶
HEK 293细胞
线粒体DNA
代谢物
酶
呼吸
生物物理学
生物能学
解剖
基因
脂肪组织
作者
Dominique Chrétien,Paule Bénit,Hyung‐Ho Ha,Susanne Keipert,Riyad El‐Khoury,Young‐Tae Chang,Martin Jastroch,Howard T. Jacobs,Pierre Rustin,Malgorzata Rak
出处
期刊:PLOS Biology
[Public Library of Science]
日期:2018-01-25
卷期号:16 (1): e2003992-e2003992
被引量:410
标识
DOI:10.1371/journal.pbio.2003992
摘要
In endothermic species, heat released as a product of metabolism ensures stable internal temperature throughout the organism, despite varying environmental conditions. Mitochondria are major actors in this thermogenic process. Part of the energy released by the oxidation of respiratory substrates drives ATP synthesis and metabolite transport, but a substantial proportion is released as heat. Using a temperature-sensitive fluorescent probe targeted to mitochondria, we measured mitochondrial temperature in situ under different physiological conditions. At a constant external temperature of 38 °C, mitochondria were more than 10 °C warmer when the respiratory chain (RC) was fully functional, both in human embryonic kidney (HEK) 293 cells and primary skin fibroblasts. This differential was abolished in cells depleted of mitochondrial DNA or treated with respiratory inhibitors but preserved or enhanced by expressing thermogenic enzymes, such as the alternative oxidase or the uncoupling protein 1. The activity of various RC enzymes was maximal at or slightly above 50 °C. In view of their potential consequences, these observations need to be further validated and explored by independent methods. Our study prompts a critical re-examination of the literature on mitochondria.
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