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线粒体丙酮酸转运功能丧失引发心脏糖原积累和心力衰竭。

Loss of mitochondrial pyruvate transport initiates cardiac glycogen accumulation and heart failure.

作者信息

Weiss Rachel C, Pyles Kelly D, Cho Kevin, Brennan Michelle, Fisher Jonathan S, Patti Gary J, McCommis Kyle S

机构信息

Edward A. Doisy Department of Biochemistry & Molecular Biology, Saint Louis University School of Medicine.

Departments of Chemistry, Medicine, and Center for Mass Spectrometry and Metabolic Tracing, Washington University in St. Louis.

出版信息

bioRxiv. 2024 Jun 9:2024.06.06.597841. doi: 10.1101/2024.06.06.597841.

Abstract

BACKGROUND

Heart failure involves metabolic alterations including increased glycolysis despite unchanged or decreased glucose oxidation. The mitochondrial pyruvate carrier (MPC) regulates pyruvate entry into the mitochondrial matrix, and cardiac deletion of the MPC in mice causes heart failure. How MPC deletion results in heart failure is unknown.

METHODS

We performed targeted metabolomics and isotope tracing in wildtype (fl/fl) and cardiac-specific Mpc2-/- (CS-Mpc2-/-) hearts after in vivo injection of U-C-glucose. Cardiac glycogen was assessed biochemically and by transmission electron microscopy. Cardiac uptake of 2-deoxyglucose was measured and western blotting performed to analyze insulin signaling and enzymatic regulators of glycogen synthesis and degradation. Isotope tracing and glycogen analysis was also performed in hearts from mice fed either low-fat diet or a ketogenic diet previously shown to reverse the CS-Mpc2-/- heart failure. Cardiac glycogen was also assessed in mice infused with angiotensin-II that were fed low-fat or ketogenic diet.

RESULTS

Failing CS-Mpc2-/- hearts contained normal levels of ATP and phosphocreatine, yet these hearts displayed increased enrichment from U-C-glucose and increased glycolytic metabolite pool sizes. C enrichment and pool size was also increased for the glycogen intermediate UDP-glucose, as well as increased enrichment of the glycogen pool. Glycogen levels were increased ~6-fold in the failing CS-Mpc2-/- hearts, and glycogen granules were easily detected by electron microscopy. This increased glycogen synthesis occurred despite enhanced inhibitory phosphorylation of glycogen synthase and reduced expression of glycogenin-1. In young, non-failing CS-Mpc2-/- hearts, increased glycolytic C enrichment occurred, but glycogen levels remained low and unchanged compared to fl/fl hearts. Feeding a ketogenic diet to CS-Mpc2-/- mice reversed the heart failure and normalized the cardiac glycogen and glycolytic metabolite accumulation. Cardiac glycogen levels were also elevated in mice infused with angiotensin-II, and both the cardiac hypertrophy and glycogen levels were improved by ketogenic diet.

CONCLUSIONS

Our results indicate that loss of MPC in the heart causes glycogen accumulation and heart failure, while a ketogenic diet can reverse both the glycogen accumulation and heart failure. We conclude that maintaining mitochondrial pyruvate import and metabolism is critical for the heart, unless cardiac pyruvate metabolism is reduced by consumption of a ketogenic diet.

摘要

背景

心力衰竭涉及代谢改变,包括尽管葡萄糖氧化不变或降低,但糖酵解增加。线粒体丙酮酸载体(MPC)调节丙酮酸进入线粒体基质,小鼠心脏中MPC的缺失会导致心力衰竭。MPC缺失如何导致心力衰竭尚不清楚。

方法

在体内注射U-C-葡萄糖后,我们对野生型(fl/fl)和心脏特异性Mpc2-/-(CS-Mpc2-/-)心脏进行了靶向代谢组学和同位素示踪。通过生化方法和透射电子显微镜评估心脏糖原。测量心脏对2-脱氧葡萄糖的摄取,并进行蛋白质印迹分析以分析胰岛素信号以及糖原合成和降解的酶调节剂。还对先前显示可逆转CS-Mpc2-/-心力衰竭的低脂饮食或生酮饮食喂养的小鼠心脏进行了同位素示踪和糖原分析。对输注血管紧张素-II并喂养低脂或生酮饮食的小鼠也评估了心脏糖原。

结果

衰竭的CS-Mpc2-/-心脏中ATP和磷酸肌酸水平正常,但这些心脏显示出U-C-葡萄糖的富集增加以及糖酵解代谢物池大小增加。糖原中间体UDP-葡萄糖的C富集和池大小也增加,糖原池的富集也增加。衰竭的CS-Mpc2-/-心脏中糖原水平增加了约6倍,并且通过电子显微镜很容易检测到糖原颗粒。尽管糖原合酶的抑制性磷酸化增强且糖原素-1的表达降低,但糖原合成仍增加。在年轻的、未衰竭的CS-Mpc2-/-心脏中,糖酵解C富集增加,但与fl/fl心脏相比,糖原水平保持低水平且无变化。给CS-Mpc2-/-小鼠喂食生酮饮食可逆转心力衰竭,并使心脏糖原和糖酵解代谢物积累正常化。输注血管紧张素-II的小鼠心脏糖原水平也升高,生酮饮食可改善心脏肥大和糖原水平。

结论

我们的结果表明,心脏中MPC的缺失会导致糖原积累和心力衰竭,而生酮饮食可以逆转糖原积累和心力衰竭。我们得出结论,维持线粒体丙酮酸的导入和代谢对心脏至关重要,除非通过食用生酮饮食降低心脏丙酮酸代谢。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f95e/12233538/9e305c0a6cbc/nihpp-2024.06.06.597841v2-f0001.jpg

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