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首页> 外文期刊>Redox Biology >Meteorin-like protein attenuates doxorubicin-induced cardiotoxicity via activating cAMP/PKA/SIRT1 pathway
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Meteorin-like protein attenuates doxorubicin-induced cardiotoxicity via activating cAMP/PKA/SIRT1 pathway

机译:Meteorin样蛋白通过激活阵营/ PKA / SIRT1路径衰减了多柔比蛋白诱导的心脏毒性

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摘要

Meteorin-like (METRNL) protein is a newly identified myokine that functions to modulate energy expenditure and inflammation in adipose tissue. Herein, we aim to investigate the potential role and molecular basis of METRNL in doxorubicin (DOX)-induced cardiotoxicity. METRNL was found to be abundantly expressed in cardiac muscle under physiological conditions that was decreased upon DOX exposure. Cardiac-specific overexpression of METRNL by adeno-associated virus serotype 9 markedly improved oxidative stress, apoptosis, cardiac dysfunction and survival status in DOX-treated mice. Conversely, knocking down endogenous METRNL by an intramyocardial injection of adenovirus exacerbated DOX-induced cardiotoxicity and death. Meanwhile, METRNL overexpression attenuated, while METRNL silence promoted oxidative damage and apoptosis in DOX-treated H9C2 cells. Systemic METRNL depletion by a neutralizing antibody aggravated DOX-related cardiac injury and dysfunction in vivo, which were notably alleviated by METRNL overexpression within the cardiomyocytes. Besides, we detected robust METRNL secretion from isolated rodent hearts and cardiomyocytes, but to a less extent in those with DOX treatment. And the beneficial effects of METRNL in H9C2 cells disappeared after the incubation with a METRNL neutralizing antibody. Mechanistically, METRNL activated SIRT1 via the cAMP/PKA pathway, and its antioxidant and antiapoptotic capacities were blocked by SIRT1 deficiency. More importantly, METRNL did not affect the tumor-killing action of DOX in 4T1 breast cancer cells and tumor-bearing mice. Collectively, cardiac-derived METRNL activates SIRT1 via cAMP/PKA signaling axis in an autocrine manner, which ultimately improves DOX-elicited oxidative stress, apoptosis and cardiac dysfunction. Targeting METRNL may provide a novel therapeutic strategy for the prevention of DOX-associated cardiotoxicity.
机译:Meteorin样(MetRN)蛋白质是一种新发现的肌肌,可以调节脂肪组织中的能量消耗和炎症。在此,我们的目的是探讨多柔比星(DOX)诱导的心脏毒性METRN1的潜在作用和分子基础。发现MetRNL在DOX暴露时下降的生理条件下在心肌中大量表达。通过腺相关病毒血清型9的MetRNL的心脏特异性过度表达明显改善了Dox处理的小鼠的氧化应激,细胞凋亡,心脏功能障碍和存活状态。相反,通过肌动脉内注射腺病毒的肾病患者爆炸内源性METRNL加剧了DOX诱导的心脏毒性和死亡。同时,METRNL过表达衰减,而METRNL沉默在DOX处理的H9C2细胞中促进了氧化损伤和凋亡。通过中和抗体加重Dox相关的心脏损伤和体内功能障碍的全身metrnl耗尽,其在心肌细胞内的MetRNL过表达明显缓解。此外,我们检测到来自孤立的啮齿动物心脏和心肌细胞的强大的MetRNL分泌,但在具有Dox治疗的人中的程度越来越少。在与MetRNL中和抗体孵育后,MetRN1在H9C2细胞中的有益效果消失。通过阵营/ PKA途径机械地,MetRNL活化SIRT1,其抗氧化剂和抗浸润能力被SIRT1缺乏阻断。更重要的是,METRNL不影响DOX在4T1乳腺癌细胞和携带肿瘤小鼠中的肿瘤杀伤作用。集体,心脏衍生的METRNL以自分泌方式通过CAMP / PKA信号轴激活SIRT1,最终改善了DOX引发的氧化应激,细胞凋亡和心脏功能障碍。靶向METRNL可以为预防DOX相关的心脏毒性提供新的治疗策略。

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