SLC25A48 控制着线粒体中胆碱的摄取和代谢。

SLC25A48 controls mitochondrial choline import and metabolism.

机构信息

Division of Endocrinology, Diabetes and Metabolism, Beth Israel Deaconess Medical Center and Harvard Medical School, and Howard Hughes Medical Institute, Boston, MA, USA.

Division of Cardiovascular Medicine, Beth Israel Deaconess Medical Center and Harvard Medical School, Boston, MA, USA.

出版信息

Cell Metab. 2024 Sep 3;36(9):2156-2166.e9. doi: 10.1016/j.cmet.2024.07.010. Epub 2024 Aug 6.

Abstract

Choline is an essential nutrient for the biosynthesis of phospholipids, neurotransmitters, and one-carbon metabolism with a critical step being its import into mitochondria. However, the underlying mechanisms and biological significance remain poorly understood. Here, we report that SLC25A48, a previously uncharacterized mitochondrial inner-membrane carrier protein, controls mitochondrial choline transport and the synthesis of choline-derived methyl donors. We found that SLC25A48 was required for brown fat thermogenesis, mitochondrial respiration, and mitochondrial membrane integrity. Choline uptake into the mitochondrial matrix via SLC25A48 facilitated the synthesis of betaine and purine nucleotides, whereas loss of SLC25A48 resulted in increased production of mitochondrial reactive oxygen species and imbalanced mitochondrial lipids. Notably, human cells carrying a single nucleotide polymorphism on the SLC25A48 gene and cancer cells lacking SLC25A48 exhibited decreased mitochondrial choline import, increased oxidative stress, and impaired cell proliferation. Together, this study demonstrates that SLC25A48 regulates mitochondrial choline catabolism, bioenergetics, and cell survival.

摘要

胆碱是生物合成磷脂、神经递质和一碳代谢所必需的营养物质,其进入线粒体是一个关键步骤。然而,其潜在的机制和生物学意义仍知之甚少。在这里,我们报告了 SLC25A48,一种以前未被描述的线粒体内膜载体蛋白,控制着线粒体中的胆碱转运和胆碱衍生的甲基供体的合成。我们发现 SLC25A48 是棕色脂肪产热、线粒体呼吸和线粒体膜完整性所必需的。通过 SLC25A48 将胆碱摄取到线粒体基质中,促进了甜菜碱和嘌呤核苷酸的合成,而 SLC25A48 的缺失则导致线粒体活性氧的产生增加和线粒体脂质的失衡。值得注意的是,携带 SLC25A48 基因单核苷酸多态性的人类细胞和缺乏 SLC25A48 的癌细胞表现出线粒体胆碱摄取减少、氧化应激增加和细胞增殖受损。总之,这项研究表明 SLC25A48 调节线粒体中的胆碱分解代谢、生物能量和细胞存活。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33d6/11953726/3b2803c0e1ce/nihms-2063854-f0002.jpg

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