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NOX2-derived reactive oxygen species are crucial for CD29-induced pro-survival signalling in cardiomyocytes

机译:NOX2衍生的活性氧对于CD29诱导的心肌细胞存活前信号至关重要

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Aims: The highly expressed cell adhesion receptor CD29 (β1-integrin) is essential for cardiomyocyte growth and survival, and its loss of function causes severe heart disease. However, CD29-induced signalling in cardiomyocytes is ill defined and may involve reactive oxygen species (ROS). A decisive source of cardiac ROS is the abundant NADPH oxidase (NOX) isoform NOX2. Because understanding of NOX-derived ROS in the heart is still poor, we sought to test the role of ROS and NOX in CD29-induced survival signalling in cardiomyocytes. Methods and results: In neonatal rat ventricular myocytes, CD29 activation induced intracellular ROS formation (oxidative burst) as assessed by flow cytometry using the redox-sensitive fluorescent dye dichlorodihydrofluorescein diacetate. This burst was inhibited by apocynin and diphenylene iodonium. Further, activation of CD29 enhanced NOX activity (lucigenin-enhanced chemiluminescence) and activated the MEK/ERK and PI3K/Akt survival pathways. CD29 also induced phosphorylation of the inhibitory Ser9 on the pro-apoptotic kinase glycogen synthase kinase-3β in a PI3K/Akt- and MEK-dependent manner, and improved cardiomyocyte viability under conditions of oxidative stress. The ROS scavenger MnTMPyP or adenoviral co-overexpression of the antioxidant enzymes superoxide dismutase and catalase inhibited CD29-induced pro-survival signalling. Further, CD29-induced protective pathways were lost in mouse cardiomyocytes deficient for NOX2 or functional p47 phox, a regulatory subunit of NOX. Conclusion: p47 phox-dependent, NOX2-derived ROS are mandatory for CD29-induced pro-survival signalling in cardiomyocytes. These findings go in line with a growing body of evidence suggesting that ROS can be beneficial to the cell and support a crucial role for NOX2-derived ROS in cell survival in the heart.
机译:目的:高表达的细胞粘附受体CD29(β1-整合素)对于心肌细胞的生长和存活至关重要,其功能丧失会导致严重的心脏病。但是,CD29诱导的心肌细胞信号传导尚不明确,可能涉及活性氧(ROS)。心脏ROS的决定性来源是丰富的NADPH氧化酶(NOX)亚型NOX2。因为对心脏中NOX衍生的ROS的了解仍然很差,所以我们试图测试ROS和NOX在CD29诱导的心肌细胞存活信号中的作用。方法和结果:在新生大鼠心室肌细胞中,使用氧化还原敏感的荧光染料二氯二氢荧光素二乙酸酯通过流式细胞术评估了CD29激活诱导的细胞内ROS的形成(氧化爆发)。该爆发被载脂蛋白和二亚苯基碘鎓抑制。此外,CD29的激活增强了NOX活性(荧光素增加了化学发光),并激活了MEK / ERK和PI3K / Akt生存途径。 CD29还以PI3K / Akt和MEK依赖性方式诱导促凋亡激酶糖原合酶激酶3β上抑制性Ser9的磷酸化,并在氧化应激条件下改善了心肌细胞的活力。 ROS清除剂MnTMPyP或抗病毒酶超氧化物歧化酶和过氧化氢酶的腺病毒共过量表达抑制CD29诱导的生存信号。此外,CD29诱导的保护途径在缺乏NOX2或功能性p47 phox(NOX的调节亚基)的小鼠心肌细胞中丢失。结论:p47 phox依赖性,NOX2衍生的ROS对于CD29诱导的心肌细胞存活前信号是必需的。这些发现与越来越多的证据相符,表明ROS可能对细胞有益,并支持NOX2衍生的ROS在心脏细胞存活中的关键作用。

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