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Uncoupling protein 2‐mediated metabolic adaptations define cardiac cell function in the heart during transition from young to old age

机译:解耦蛋白2介导的代谢适应在从年轻人到老年的转变期间定义心脏中心脏细胞功能

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摘要

Cellular replacement in the heart is restricted to postnatal stages with the adult heart largely postmitotic. Studies show that loss of regenerative properties in cardiac cells seems to coincide with alterations in metabolism during postnatal development and maturation. Nevertheless, whether changes in cellular metabolism are linked to functional alternations in cardiac cells is not well studied. We report here a novel role for uncoupling protein 2 (UCP2) in regulation of functional properties in cardiac tissue derived stem‐like cells (CTSCs). CTSC were isolated from C57BL/6 mice aged 2 days (nCTSC), 2 month (CTSC), and 2 years old (aCTSC), subjected to bulk‐RNA sequencing that identifies unique transcriptome significantly different between CTSC populations from young and old heart. Moreover, results show that UCP2 is highly expressed in CTSCs from the neonatal heart and is linked to maintenance of glycolysis, proliferation, and survival. With age, UCP2 is reduced shifting energy metabolism to oxidative phosphorylation inversely affecting cellular proliferation and survival in aged CTSCs. Loss of UCP2 in neonatal CTSCs reduces extracellular acidification rate and glycolysis together with reduced cellular proliferation and survival. Mechanistically, UCP2 silencing is linked to significant alteration of mitochondrial genes together with cell cycle and survival signaling pathways as identified by RNA‐sequencing and STRING bioinformatic analysis. Hence, our study shows UCP2‐mediated metabolic profile regulates functional properties of cardiac cells during transition from neonatal to aging cardiac states.
机译:心脏细胞的替代物仅限于产后心脏的产后阶段大部分后序。研究表明,心脏细胞中再生性能的丧失似乎与产后和成熟期间代谢的改变似乎一致。然而,无论细胞代谢的变化是否与心脏细胞中的功能交替相关。我们在此报告用于在心脏组织衍生的干细胞(CTSCS)中功能性质调节中的脱蛋白2(UCP2)的新颖作用。 CTSC与2天(NCTSC),2个月(CTSC)和2岁(ACTSC)的C57BL / 6小鼠分离,经受批量RNA测序,该测序识别来自年轻和老心脏的CTSC种群之间的独特转录组。此外,结果表明,UCP2在来自新生儿心脏的CTSCS中高度表达,与糖酵解,增殖和存活的维持联系。随着年龄的增长,UCP2减少了氧化磷酸化转化能量代谢,其反常影响老年人CTSCS中的细胞增殖和存活。新生儿CTSCS中UCP2的丧失降低了细胞外酸化速率和糖酵解,降低了细胞增殖和存活率。机械地,UCP2沉默与线粒体基因的显着改变与细胞周期和存活信令途径相连,如RNA测序和串生物信息分析所鉴定的那样。因此,我们的研究表明,UCP2介导的代谢型材调节心脏细胞的功能特性在新生儿对老化心脏状态的转变期间。

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