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线粒体烟酰胺腺嘌呤二核苷酸磷酸(NADPH)为线粒体脂肪酸合成及硫辛酰化反应提供能量,从而驱动氧化代谢。

Mitochondrial NADPH fuels mitochondrial fatty acid synthesis and lipoylation to power oxidative metabolism.

作者信息

Kim Dohun, Kesavan Rushendhiran, Ryu Kevin, Dey Trishna, Marckx Austin, Menezes Cameron, Praharaj Prakash P, Morley Stewart, Ko Bookyung, Soflaee Mona H, Tom Harrison J, Brown Harrison, Vu Hieu S, Tso Shih-Chia, Brautigam Chad A, Lemoff Andrew, Mettlen Marcel, Mishra Prashant, Cai Feng, Allen Doug K, Hoxhaj Gerta

机构信息

Children's Medical Center Research Institute, University of Texas Southwestern Medical Center, Dallas, TX, USA.

Lyda Hill Department of Bioinformatics, University of Texas Southwestern Medical Center, Dallas, TX, USA.

出版信息

Nat Cell Biol. 2025 May;27(5):790-800. doi: 10.1038/s41556-025-01655-4. Epub 2025 Apr 21.

Abstract

Nicotinamide adenine dinucleotide phosphate (NADPH) is a vital electron donor essential for macromolecular biosynthesis and protection against oxidative stress. Although NADPH is compartmentalized within the cytosol and mitochondria, the specific functions of mitochondrial NADPH remain largely unexplored. Here we demonstrate that NAD kinase 2 (NADK2), the principal enzyme responsible for mitochondrial NADPH production, is critical for maintaining protein lipoylation, a conserved lipid modification necessary for the optimal activity of multiple mitochondrial enzyme complexes, including the pyruvate dehydrogenase complex. The mitochondrial fatty acid synthesis (mtFAS) pathway utilizes NADPH for generating protein-bound acyl groups, including lipoic acid. By developing a mass-spectrometry-based method to assess mammalian mtFAS, we reveal that NADK2 is crucial for mtFAS activity. NADK2 deficiency impairs mtFAS-associated processes, leading to reduced cellular respiration and mitochondrial translation. Our findings support a model in which mitochondrial NADPH fuels the mtFAS pathway, thereby sustaining protein lipoylation and mitochondrial oxidative metabolism.

摘要

烟酰胺腺嘌呤二核苷酸磷酸(NADPH)是一种重要的电子供体,对大分子生物合成和抵御氧化应激至关重要。尽管NADPH在细胞质和线粒体中是分隔存在的,但线粒体NADPH的具体功能在很大程度上仍未被探索。在这里,我们证明了NAD激酶2(NADK2),即负责线粒体NADPH产生的主要酶,对于维持蛋白质脂酰化至关重要,蛋白质脂酰化是一种保守的脂质修饰,对于包括丙酮酸脱氢酶复合体在内的多种线粒体酶复合体的最佳活性是必需的。线粒体脂肪酸合成(mtFAS)途径利用NADPH生成与蛋白质结合的酰基,包括硫辛酸。通过开发一种基于质谱的方法来评估哺乳动物的mtFAS,我们发现NADK2对mtFAS活性至关重要。NADK2缺乏会损害与mtFAS相关的过程,导致细胞呼吸和线粒体翻译减少。我们的研究结果支持了一种模型,即线粒体NADPH为mtFAS途径提供燃料,从而维持蛋白质脂酰化和线粒体氧化代谢。

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