线粒体
呼吸链
β氧化
生物化学
焊剂(冶金)
细胞生物学
生物
线粒体呼吸链
脂肪酸
骨骼肌
NAD+激酶
脂质代谢
化学
酶
内分泌学
有机化学
作者
Timothy R. Koves,Guofang Zhang,Michael T. Davidson,Alec Chaves,Scott B. Crown,Jordan M. Johnson,Dorothy H. Slentz,Paul A. Grimsrud,Deborah M. Muoio
出处
期刊:Cell Metabolism
[Elsevier]
日期:2023-06-01
卷期号:35 (6): 1038-1056.e8
被引量:13
标识
DOI:10.1016/j.cmet.2023.03.016
摘要
Even-chain acylcarnitine (AC) metabolites, most of which are generated as byproducts of incomplete fatty acid oxidation (FAO), are viewed as biomarkers of mitochondrial lipid stress attributable to one or more metabolic bottlenecks in the β-oxidation pathway. The origins and functional implications of FAO bottlenecks remain poorly understood. Here, we combined a sophisticated mitochondrial phenotyping platform with state-of-the-art molecular profiling tools and multiple two-state mouse models of respiratory function to uncover a mechanism that connects AC accumulation to lipid intolerance, metabolic inflexibility, and respiratory inefficiency in skeletal muscle mitochondria. These studies also identified a short-chain carbon circuit at the C4 node of FAO wherein reverse flux of glucose-derived acetyl CoA through medium-chain ketothiolase enhances lipid tolerance and redox stability in heart mitochondria by regenerating free CoA and NAD+. The findings help to explain why diminished FAO capacity, AC accumulation, and metabolic inflexibility are tightly linked to poor health outcomes.
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