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基于磷酸酶活性的PPM1K:线粒体功能调节中的关键因子及其在疾病中的多方面影响

Phosphatase activity-based PPM1K: a key player in the regulation of mitochondrial function and its multifaceted impact in diseases.

作者信息

Mao Yuanling, Feng Jing

机构信息

Tianjin Medical University General Hospital, 154 Anshan Road, Heping District, Tianjin, 300052, China.

出版信息

Mol Cell Biochem. 2025 May;480(5):2815-2826. doi: 10.1007/s11010-024-05188-6. Epub 2024 Dec 18.

DOI:10.1007/s11010-024-05188-6
PMID:39695034
Abstract

PPM1K is a significant metal-dependent phosphatase predominantly located in the mitochondrial matrix, where it plays a crucial role in the metabolism of branched-chain amino acids (BCAAs). It is implicated in cellular function and development across various tissues and is associated with diseases like Alzheimer's, cardiomyopathy, and maple syrup urine disease (MSUD). This article reviews PPM1K's impact on mitochondrial function and cellular metabolism, as well as its role in disease progression. The regulation of PPM1K expression and activity by various factors is complex and highlights its therapeutic potential. PPM1K's dysfunction can lead to the accumulation of BCAAs and the excessive opening of the mitochondrial permeability transition pore (MPTP), disrupting physiological metabolism and function. It also regulates the degradation of BCAAs by acting as a specific phosphatase for the E1α subunit of the BCKD complex. Outside the mitochondria, PPM1K suppresses de novo fatty acid synthesis and promotes fatty acid oxidation by dephosphorylating ACL. Furthermore, PPM1K has anti-inflammatory effects and modulates immune cell infiltration in tumor tissues. The expression and activity of PPM1K are influenced by factors such as BCAA concentration, fructose intake, and drug treatments, making it a promising target for therapeutic applications and further basic research.

摘要

PPM1K是一种重要的金属依赖性磷酸酶,主要位于线粒体基质中,在支链氨基酸(BCAAs)的代谢中起关键作用。它涉及各种组织的细胞功能和发育,并与阿尔茨海默病、心肌病和枫糖尿症(MSUD)等疾病相关。本文综述了PPM1K对线粒体功能和细胞代谢的影响,以及它在疾病进展中的作用。各种因素对PPM1K表达和活性的调节很复杂,并突出了其治疗潜力。PPM1K功能障碍可导致BCAAs积累和线粒体通透性转换孔(MPTP)过度开放,破坏生理代谢和功能。它还通过作为BCKD复合物E1α亚基的特异性磷酸酶来调节BCAAs的降解。在线粒体之外,PPM1K通过使ACL去磷酸化来抑制从头脂肪酸合成并促进脂肪酸氧化。此外,PPM1K具有抗炎作用并调节肿瘤组织中的免疫细胞浸润。PPM1K的表达和活性受BCAA浓度、果糖摄入和药物治疗等因素影响,使其成为治疗应用和进一步基础研究的有前景的靶点。

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本文引用的文献

1
miR-743b-3p promotes hepatic lipogenesis via branched-chain amino acids (BCAA) metabolism by targeting PPM1K in aged mice.miR-743b-3p 通过靶向 PPM1K 促进老年小鼠肝脏的支链氨基酸(BCAA)代谢来促进肝内脂质生成。
Arch Gerontol Geriatr. 2024 Aug;123:105424. doi: 10.1016/j.archger.2024.105424. Epub 2024 Mar 26.
2
Maintenance of the branched-chain amino acid transporter LAT1 counteracts myotube atrophy following chemotherapy.维持支链氨基酸转运体 LAT1 可抵抗化疗后肌管萎缩。
Am J Physiol Cell Physiol. 2024 Mar 1;326(3):C866-C879. doi: 10.1152/ajpcell.00537.2023. Epub 2024 Jan 29.
3
Reduced Branched-Chain Amino Acid Intake Improved High-Fat Diet-Induced Nonalcoholic Fatty Pancreas Disease in Mice.
减少支链氨基酸摄入可改善高脂饮食诱导的小鼠非酒精性脂肪性胰腺疾病。
Pancreas. 2024 Feb 1;53(2):e157-e163. doi: 10.1097/MPA.0000000000002281. Epub 2024 Jan 15.
4
Disrupted cardiac fibroblast BCAA catabolism contributes to diabetic cardiomyopathy via a periostin/NAP1L2/SIRT3 axis.心脏成纤维细胞支链氨基酸分解代谢紊乱通过骨桥蛋白/NAP1L2/SIRT3 轴导致糖尿病心肌病。
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[Effect of 2 Gene Silencing on Mouse Macrophage Resistance Against Infection via TLR Pathway].[2基因沉默对小鼠巨噬细胞通过Toll样受体途径抗感染能力的影响]
Sichuan Da Xue Xue Bao Yi Xue Ban. 2023 Sep;54(5):941-946. doi: 10.12182/20230960206.
6
PPM1K mediates metabolic disorder of branched-chain amino acid and regulates cerebral ischemia-reperfusion injury by activating ferroptosis in neurons.PPM1K 通过激活神经元中的铁死亡来介导支链氨基酸代谢紊乱,并调节脑缺血再灌注损伤。
Cell Death Dis. 2023 Sep 26;14(9):634. doi: 10.1038/s41419-023-06135-x.
7
Defective branched-chain amino acid catabolism in dorsal root ganglia contributes to mechanical pain.背根神经节中支链氨基酸代谢缺陷导致机械性疼痛。
EMBO Rep. 2023 Nov 6;24(11):e56958. doi: 10.15252/embr.202356958. Epub 2023 Sep 18.
8
The amino acid metabolomics signature of differentiating myocardial infarction from strangulation death in mice models.区分小鼠模型中心肌梗死与绞杀死亡的氨基酸代谢组学特征。
Sci Rep. 2023 Sep 11;13(1):14999. doi: 10.1038/s41598-023-41819-6.
9
Branched-chain keto acids inhibit mitochondrial pyruvate carrier and suppress gluconeogenesis in hepatocytes.支链酮酸抑制线粒体丙酮酸载体并抑制肝细胞中的糖异生。
Cell Rep. 2023 Jun 27;42(6):112641. doi: 10.1016/j.celrep.2023.112641. Epub 2023 Jun 12.
10
Empagliflozin ameliorates diabetic cardiomyopathy via regulated branched-chain amino acid metabolism and mTOR/p-ULK1 signaling pathway-mediated autophagy.恩格列净通过调节支链氨基酸代谢和mTOR/p-ULK1信号通路介导的自噬改善糖尿病心肌病。
Diabetol Metab Syndr. 2023 May 6;15(1):93. doi: 10.1186/s13098-023-01061-6.