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首页> 外文期刊>American Journal of Physiology >Inhibition of phospholipase C-gamma 1 augments the decrease in cardiomyocyte viability by H2O2.
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Inhibition of phospholipase C-gamma 1 augments the decrease in cardiomyocyte viability by H2O2.

机译:磷脂酶C-γ1的抑制增加了H2O2对心肌细胞活力的降低。

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摘要

The present study was conducted to examine the role of a major cardiac phospholipase C (PLC) isozyme, PLC-gamma 1, in cardiomyocytes during oxidative stress. Left ventricular cardiomyocytes were isolated by collagenase digestion from adult male Sprague-Dawley rats (250-300 g) and treated with 20, 50, and 100 microM H2O2 for 15 min. A concentration-dependent (up to 50 microM) increase in the mRNA level and membrane protein content of PLC-gamma 1 was observed with H2O2 treatment. Furthermore, PLC-gamma 1 was activated in response to H2O2, as revealed by an increase in the phosphorylation of its tyrosine residues. There was a marked increase in the phosphorylation of the antiapoptotic protein Bcl-2 by H2O2; this change was attenuated by a PLC inhibitor, U-73122. Although both protein kinase C (PKC)-delta and -epsilon protein contents were increased in the cardiomyocyte membrane fraction in response to H2O2, PKC-epsilon activation, unlike PKC-delta, was attenuated by U-73122 (2 microM). Inhibition of PKC-epsilon with inhibitory peptide (0.1 microM) prevented Bcl-2 phosphorylation. Moreover, different concentrations (0.05, 0.1, and 0.2 microM) of this peptide augmented the decrease in cardiomyocyte viability in response to H2O2. In addition, a decrease in cardiomyocyte viability, as assessed by trypan blue exclusion, due to H2O2 was also seen when cells were pretreated with U-73122 and was as a result of increased apoptosis. It is therefore suggested that PLC-gamma 1 may play a role in cardiomyocyte survival during oxidative stress via PKC-epsilon and phosphorylation of Bcl-2.
机译:进行本研究以检查氧化应激期间心肌细胞中主要的心脏磷脂酶C(PLC)同工酶PLC-γ1的作用。通过胶原酶消化从成年雄性Sprague-Dawley大鼠(250-300 g)中分离左心室心肌细胞,并分别用20、50和100 microM H2O2处理15分钟。用H2O2处理观察到PLC-γ1的mRNA水平和膜蛋白含量呈浓度依赖性(最高50 microM)。此外,PLC-γ1响应于H2O2而被激活,这通过其酪氨酸残基的磷酸化增加而得以揭示。 H2O2使抗凋亡蛋白Bcl-2的磷酸化显着增加。这种变化被PLC抑制剂U-73122减弱了。尽管响应H2O2,心肌细胞膜蛋白激酶C(PKC)-δ和-epsilon蛋白含量均增加,但与PKC-delta不同,PKC-ε激活被U-73122(2 microM)减弱。用抑制肽(0.1 microM)抑制PKC-ε阻止了Bcl-2磷酸化。此外,不同浓度(0.05、0.1和0.2 microM)的该肽可增加心肌细胞对H2O2的反应能力。此外,当用U-73122预处理细胞时,还发现由于过氧化氢而导致的心肌细胞活力下降(通过台盼蓝排除法评估),这是细胞凋亡增加的结果。因此,建议PLC-γ1可能通过PKC-ε和Bcl-2的磷酸化在氧化应激过程中在心肌细胞存活中发挥作用。

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