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首页> 外文期刊>American Journal of Physiology >AFos inhibits phenylephrine-mediated contractile dysfunction by altering phospholamban phosphorylation
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AFos inhibits phenylephrine-mediated contractile dysfunction by altering phospholamban phosphorylation

机译:AFOS通过改变磷蛋白磷酸化来抑制去氧肾上腺介导的收缩功能障碍

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Using neonatal rat ventricular myocytes, we previously reported that the expression of a dominant negative form of the c-Fos proto-oncogene (AFos) inhibited activator protein 1 activity and blocked the induction of the pathological gene profile stimulated by phenylephrine (PE) while leaving growth unaffected. We now extend these observations to the adult rat ventricular myocyte (ARVM) to understand the relationship between gene expression, growth, and function. Ventricular myocytes were isolated from adult rats and infected with adenovirus expressing β-galactosidase (control) or AFos. The cells were subsequently treated with PE, and protein synthesis, gene program, calcium transients, and contractility were evaluated. As seen with the neonatal rat ventricular myocytes, in control cells PE stimulated an increase in protein synthesis, induced the pathological gene profile, and exhibited both depressed contractility and calcium transients. Although ARVMs expressing AFos still had PE-induced growth, pathological gene expression as well as contractility and calcium handling abnormalities were inhibited. To determine a possible mechanism of the preserved myocyte function in AFos-expressing cells, we examined phospholamban (PLB) and sarco(endo)plasmic reticulum calcium-ATPase proteins. Although there was no change in total PLB or sarco(endo)plasmic reticulum calcium-ATPase expression in response to PE treatment, PE decreased the phosphorylation of PLB at serine-16, an observation that was prevented in AFos-expressing cells. In conclusion, although PE-induced growth was unaffected in AFos-expressing ARVMs, the expression of the pathological gene profile was inhibited and both contractile function and calcium cycling were preserved. The inhibition of functional deterioration was, in part, due to the preservation of PLB phosphorylation.
机译:使用新生大鼠心室肌细胞,先前报道了C-FOS原癌基因(AFOS)的显性负形式的表达抑制活化剂蛋白1活性,并阻止了在离开时诱导的苯妥(PE)刺激的病理基因谱增长不受影响。我们现在将这些观察结果扩展到成年大鼠心室肌细胞(ARVM)以了解基因表达,生长和功能之间的关系。从成年大鼠中分离室外肌细胞,并用表达β-半乳糖苷酶(对照)或AFOS的腺病毒感染。随后用PE处理细胞,并评估蛋白质合成,基因程序,钙瞬变和收缩性。如用新生大鼠心室肌细胞所见,在对照细胞中,PE刺激蛋白质合成的增加,诱导病理基因谱,并表现出抑郁的收缩力和钙瞬变。尽管表达AFOS的ARVM仍然具有体育诱导的生长,但抑制了病理基因表达以及收缩性和钙处理异常。为了确定在AFOS表达细胞中保存的肌细胞功能的可能机制,我们检测了磷樟本(PLB)和Sarco(endo)素质网钙ATP酶蛋白。尽管总PLB或SARCO(ENDO)粒状网钙-ATP酶表达没有变化响应于PE处理,但PE在丝氨酸-16时降低PLB的磷酸化,这是在表达AFOS表达细胞中预防的观察结果。总之,尽管体育诱导的生长在表达AFOS的ARVMS中不受影响,但抑制了病理基因谱的表达,并保留了收缩功能和钙循环。由于保存PLB磷酸化,抑制功能性劣化是部分原因。

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