首页> 外文期刊>In Vitro Cellular and Developmental Biology. Animal: Journal of the Tissues Culture Association >Nucleostemin exerts anti-apoptotic function via p53 signaling pathway in cardiomyocytes
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Nucleostemin exerts anti-apoptotic function via p53 signaling pathway in cardiomyocytes

机译:核糖蛋白通过p53信号通路在心肌细胞中发挥抗凋亡功能

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Cardiomyocytes apoptosis following reperfusion injury causes irreversible damage to cardiac function. Understanding the mechanisms underlying cardiomyocytes death under these conditions can be helpful to identify strategies to abrogate such detrimental effects. Stem cell-specific proteins and regulatory pathways become important in understanding reparative processes in the myocardium. One such regulatory protein named nucleostemin (NS) has vital roles in cardiac ischemia. Although the relationship between NS and cell apoptosis has been studied, it is unknown how NS is controlled and how it participates in cardiomyocytes apoptosis induced by ischemia reperfusion (I/R). In the present study, we aimed to investigate the direct role of NS in myocardial I/R. In vivo, NS was highly expressed in cardiac tissues after I/R. Double immunofluorescent staining showed that NS located in the nucleolar of cardiomyocytes and correlated with cardiomyocytes apoptosis. Furthermore, in vitro primary rat cardiomyocytes increased NS expression induced by hypoxia-reoxygenation (H/R) treatment, in line with results in vivo. Suppression of NS expression by siNS promoted the expression of terminal deoxynucleotide transferase-mediated dUTP nick end labeling (TUNEL)-positive cells p53 and cleaved caspase-3, which demonstrates I/R may require increased expression of NS to suppress p53 activation and maintain cardiomyocytes survival.
机译:再灌注损伤后的心肌细胞凋亡导致心脏功能不可逆转的损害。了解在这些情况下心肌细胞死亡的潜在机制可能有助于确定消除此类有害作用的策略。干细胞特异的蛋白质和调控途径对于理解心肌的修复过程至关重要。一种称为核蛋白(NS)的调节蛋白在心脏缺血中起着至关重要的作用。尽管已经研究了NS与细胞凋亡之间的关系,但是未知如何控制NS以及NS如何参与缺血再灌注(I / R)诱导的心肌细胞凋亡。在本研究中,我们旨在研究NS在心肌I / R中的直接作用。在体内,NS在I / R后在心脏组织中高表达。双重免疫荧光染色显示NS位于心肌细胞核内,并与心肌细胞凋亡相关。此外,体外原代大鼠心肌细胞增加了由缺氧-复氧(H / R)处理诱导的NS表达,与体内结果一致。 siNS抑制NS表达促进了末端脱氧核苷酸转移酶介导的dUTP缺口末端标记(TUNEL)阳性细胞p53的表达并裂解了caspase-3,这表明I / R可能需要增加NS的表达才能抑制p53活化并维持心肌细胞。生存。

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