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骨骼肌代谢在猪出生后生长过程中是动态变化的。

Skeletal Muscle Metabolism Is Dynamic during Porcine Postnatal Growth.

作者信息

Rimmer Linnea A, Geisbrecht Erika R, Chao Michael D, O'Quinn Travis G, Woodworth Jason C, Zumbaugh Morgan D

机构信息

Department of Animal Sciences and Industry, Kansas State University, Manhattan, KS 66506,

Department of Biochemistry and Molecular Biophysics, Kansas State University, Manhattan, KS 66506, USA.

出版信息

Metabolites. 2024 Jun 26;14(7):357. doi: 10.3390/metabo14070357.

Abstract

Skeletal muscle metabolism has implications for swine feed efficiency (FE); however, it remains unclear if the metabolic profile of skeletal muscle changes during postnatal growth. To assess the metabolic changes, samples were collected from the (LD, glycolytic muscle), (LAT, mixed muscle), and (MS, oxidative muscle) at 20, 53, 87, 120, and 180 days of age from barrows. Muscles were assessed to determine the abundance of several metabolic enzymes. Lactate dehydrogenase (LDHα) decreased in all muscles from 20 to 87 d ( < 0.01), which may be attributed to the muscles being more glycolytic at weaning from a milk-based diet. Pyruvate carboxylase (PC) increased in all muscles at 53 d compared to the other time points ( < 0.01), while pyruvate dehydrogenase α 1 (PDHα1) increased at 87 and 180 d in MS compared to LD ( < 0.05), indicating that potential changes occur in pyruvate entry into the tricarboxylic acid (TCA) cycle during growth. Isolated mitochondria from each muscle were incubated with C-labeled metabolites to assess isotopomer enrichment patterns of TCA intermediates. Citrate M + 2 and M + 4 derived from [C]-pyruvate increased at 87 d in LAT and MS mitochondria compared to LD mitochondria ( < 0.05). Regardless of the muscle, citrate M+3 increased at 87 d compared to 20, 53, and 120 d, while 180 d showed intermediate values ( < 0.01). These data support the notion that pyruvate metabolism is dynamic during growth. Our findings establish a metabolic fingerprint associated with postnatal muscle hypertrophy.

摘要

骨骼肌代谢对猪的饲料效率(FE)有影响;然而,尚不清楚骨骼肌的代谢特征在出生后生长过程中是否会发生变化。为了评估代谢变化,从20、53、87、120和180日龄的公猪身上采集了(腰大肌,糖酵解型肌肉)、(背阔肌,混合型肌肉)和(比目鱼肌,氧化型肌肉)的样本。对肌肉进行评估以确定几种代谢酶的丰度。乳酸脱氢酶(LDHα)在所有肌肉中从20日龄到87日龄均下降(P<0.01),这可能归因于断奶时从以奶为基础的饮食转变后肌肉更倾向于糖酵解。与其他时间点相比,丙酮酸羧化酶(PC)在53日龄时在所有肌肉中均增加(P<0.01),而丙酮酸脱氢酶α1(PDHα1)在比目鱼肌中87日龄和180日龄时相比腰大肌增加(P<0.05),表明生长过程中丙酮酸进入三羧酸(TCA)循环可能发生了潜在变化。将来自每块肌肉的分离线粒体与C标记的代谢物一起孵育,以评估TCA中间体的同位素异构体富集模式。与腰大肌线粒体相比,来自[C] - 丙酮酸的柠檬酸M + 2和M + 4在87日龄时在背阔肌和比目鱼肌线粒体中增加(P<0.05)。无论哪种肌肉,柠檬酸M + 3在87日龄时相比于20、53和120日龄均增加,而180日龄时显示出中间值(P<0.01)。这些数据支持了丙酮酸代谢在生长过程中是动态变化的这一观点。我们的研究结果建立了与出生后肌肉肥大相关的代谢指纹图谱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1452/11279009/cc636a581f0b/metabolites-14-00357-g001.jpg

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