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首页> 外文期刊>American Journal of Physiology >Characterization of the role of gamma2 R531G mutation in AMP-activated protein kinase in cardiac hypertrophy and Wolff-Parkinson-White syndrome.
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Characterization of the role of gamma2 R531G mutation in AMP-activated protein kinase in cardiac hypertrophy and Wolff-Parkinson-White syndrome.

机译:在心脏肥大和Wolff-Parkinson-White综合征中AMP激活的蛋白激酶中γ2R531G突变的作用表征。

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AMP-activated protein kinase (AMPK) is the downstream component of a protein kinase cascade that plays a key role in the regulation of energy metabolism. In humans, mutations in the gamma2-subunit of AMPK cause cardiac hypertrophy associated with Wolff-Parkinson-White syndrome, characterized by ventricular preexcitation. The effect of these mutations on AMPK activity and in development of the disease is enigmatic. Here we report that transgenic mice with cardiac-specific expression of gamma2 harboring a mutation of arginine residue 531 to glycine (RG-TG) develop a striking cardiac phenotype by 4 wk of age, including hypertrophy, impaired contractile function, electrical conduction abnormalities, and marked glycogen accumulation. At this stage, AMPK activity isolated from hearts of RG-TG mice was almost completely abolished but could be restored after phosphorylation by an upstream AMPK kinase. At 1 wk of age, there was no detectable evidence of a cardiac phenotype, and AMPK activity in RG-TG hearts wassimilar to that in nontransgenic, control mice. We propose that mutations in gamma2 lead to suppression of total cardiac AMPK activity secondary to increased glycogen accumulation. The subsequent decrease in AMPK activity provides a mechanism that may explain the development of cardiac hypertrophy in this model.
机译:AMP激活的蛋白激酶(AMPK)是蛋白激酶级联反应的下游成分,在能量代谢调节中起关键作用。在人类中,AMPK的gamma2亚基发生突变会引起与沃尔夫·帕金森-怀特综合症相关的心脏肥大,其特征是心室预激。这些突变对AMPK活性和疾病发展的影响是神秘的。在这里,我们报道了带有心脏特异性表达的gamma2的基因特异的基因,其中的精氨酸残基531突变为甘氨酸(RG-TG),在4周龄时出现了明显的心脏表型,包括肥大,收缩功能受损,电传导异常和糖原积累明显。在此阶段,从RG-TG小鼠心脏分离的AMPK活性几乎被完全消除,但在上游AMPK激酶磷酸化后可以恢复。在1周大时,没有可检测到的心脏表型证据,RG-TG心脏中的AMPK活性与非转基因对照小鼠的相似。我们建议,gamma2中的突变导致抑制继发于糖原积累的总心脏AMPK活性。 AMPK活性随后的下降提供了一种机制,可以解释该模型中心脏肥大的发展。

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