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过量的蛋白质 O-连接的 N-乙酰葡萄糖胺修饰将代谢紊乱与肺动脉高压的右心室功能障碍联系起来。

Excess Protein O-GlcNAcylation Links Metabolic Derangements to Right Ventricular Dysfunction in Pulmonary Arterial Hypertension.

机构信息

Cardiovascular Division, Lillehei Heart Institute, University of Minnesota, Minneapolis, MN 55455, USA.

Department of Medicine, Queen's University, Kingston, ON K7L3N6, Canada.

出版信息

Int J Mol Sci. 2020 Oct 1;21(19):7278. doi: 10.3390/ijms21197278.

Abstract

The hexosamine biosynthetic pathway (HBP) converts glucose to uridine-diphosphate--acetylglucosamine, which, when added to serines or threonines, modulates protein function through protein O-GlcNAcylation. Glutamine-fructose-6-phosphate amidotransferase (GFAT) regulates HBP flux, and AMP-kinase phosphorylation of GFAT blunts GFAT activity and O-GlcNAcylation. While numerous studies demonstrate increased right ventricle (RV) glucose uptake in pulmonary arterial hypertension (PAH), the relationship between O-GlcNAcylation and RV function in PAH is unexplored. Therefore, we examined how colchicine-mediated AMP-kinase activation altered HBP intermediates, O-GlcNAcylation, mitochondrial function, and RV function in pulmonary artery-banded (PAB) and monocrotaline (MCT) rats. AMPK activation induced GFAT phosphorylation and reduced HBP intermediates and O-GlcNAcylation in MCT but not PAB rats. Reduced O-GlcNAcylation partially restored the RV metabolic signature and improved RV function in MCT rats. Proteomics revealed elevated expression of O-GlcNAcylated mitochondrial proteins in MCT RVs, which fractionation studies corroborated. Seahorse micropolarimetry analysis of H9c2 cardiomyocytes demonstrated colchicine improved mitochondrial function and reduced O-GlcNAcylation. Presence of diabetes in PAH, a condition of excess O-GlcNAcylation, reduced RV contractility when compared to nondiabetics. Furthermore, there was an inverse relationship between RV contractility and HgbA1C. Finally, RV biopsy specimens from PAH patients displayed increased O-GlcNAcylation. Thus, excess O-GlcNAcylation may contribute to metabolic derangements and RV dysfunction in PAH.

摘要

己糖胺生物合成途径 (HBP) 将葡萄糖转化为尿苷二磷酸-乙酰葡萄糖胺,当添加到丝氨酸或苏氨酸时,通过蛋白质 O-GlcNAcylation 调节蛋白质功能。谷氨酰胺-果糖-6-磷酸酰胺转移酶 (GFAT) 调节 HBP 通量,AMP-激酶磷酸化 GFAT 使 GFAT 活性和 O-GlcNAcylation 变钝。虽然许多研究表明肺动脉高压 (PAH) 中右心室 (RV) 的葡萄糖摄取增加,但 O-GlcNAcylation 与 PAH 中 RV 功能之间的关系尚未得到探索。因此,我们研究了秋水仙碱介导的 AMP-激酶激活如何改变 HBP 中间体、O-GlcNAcylation、线粒体功能和肺动脉带 (PAB) 和单克隆毒素 (MCT) 大鼠的 RV 功能。AMPK 激活诱导 GFAT 磷酸化并减少 MCT 但不减少 PAB 大鼠的 HBP 中间体和 O-GlcNAcylation。减少 O-GlcNAcylation 部分恢复了 RV 的代谢特征,并改善了 MCT 大鼠的 RV 功能。蛋白质组学揭示了 MCT RV 中 O-GlcNAcylated 线粒体蛋白的表达升高,分馏研究证实了这一点。对 H9c2 心肌细胞的 Seahorse 微极化分析表明,秋水仙碱可改善线粒体功能并减少 O-GlcNAcylation。与非糖尿病患者相比,PAH 中的糖尿病存在过量的 O-GlcNAcylation,降低了 RV 的收缩性。此外,RV 收缩性与 HgbA1C 呈负相关。最后,PAH 患者的 RV 活检标本显示 O-GlcNAcylation 增加。因此,过量的 O-GlcNAcylation 可能导致 PAH 中的代谢紊乱和 RV 功能障碍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82fd/7582480/96bf0fd9dc5b/ijms-21-07278-g001.jpg

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