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首页> 外文期刊>American Journal of Physiology >Activation of AMPK alpha- and gamma-isoform complexes in the intact ischemic rat heart.
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Activation of AMPK alpha- and gamma-isoform complexes in the intact ischemic rat heart.

机译:完整缺血大鼠心脏中AMPKα和γ亚型复合物的激活。

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AMP-activated protein kinase (AMPK) plays a key role in modulating cellular metabolic processes. AMPK, a serine-threonine kinase, is a heterotrimeric complex of catalytic alpha-subunits and regulatory beta- and gamma-subunits with multiple isoforms. Mutations in the cardiac gamma(2)-isoform have been associated with hypertrophic cardiomyopathy and pre-excitation syndromes. However, physiological regulation of AMPK complexes containing different subunit isoforms is not well defined and is important for an understanding of the function of this signaling pathway in the intact heart. We evaluated the kinase activity associated with heart AMPK complexes containing specific alpha- and gamma-subunit isoforms of AMPK in an in vivo rat model of regional ischemia. Left coronary artery occlusion activated the immunoprecipitated alpha(1)-isoform (6-fold, P < 0.01) and alpha(2)-isoform (9-fold, P < 0.01) in the ischemic left ventricle compared with sham controls. The degree of alpha-subunit activation depended on the extent of ischemia and paralleled echocardiographic contractile dysfunction. The regulatory gamma(1)- and gamma(2)-isoforms were expressed in the heart. The gamma(1)- and gamma(2)-isoforms coimmunoprecipitated with alpha(1)- and alpha(2)-isoforms in proportion to alpha-subunit content. gamma(1)-Isoform immunocomplexes accounted for 70% of AMPK activity and AMPK phosphorylation (Thr(172)) in hearts. Ischemia similarly increased AMPK activity associated with the gamma(1)- and gamma(2)-isoform complexes threefold (P < 0.01 for each). Thus AMPK catalytic alpha(1)- and alpha(2)-isoforms are activated by regional ischemia in vivo in the heart, irrespective of the regulatory gamma(1)- or gamma(2)-isoforms to which they are complexed. Despite the pathophysiological importance of gamma(2)-isoform mutations, gamma(1)-isoform complexes account for most of the AMPK activity in the ischemic heart.
机译:AMP激活的蛋白激酶(AMPK)在调节细胞代谢过程中起关键作用。 AMPK是一种丝氨酸-苏氨酸激酶,是具有多个同种型的催化性α-亚基和调节性β-和γ-亚基的异三聚体复合物。心脏γ(2)异构体中的突变已与肥厚型心肌病和兴奋前综合征相关。但是,尚未明确定义含有不同亚基亚型的AMPK复合物的生理调节,对于了解完整心脏中该信号通路的功能很重要。我们在区域缺血的体内大鼠模型中评估了与心脏AMPK配合物相关的激酶活性,该心脏AMPK配合物包含AMPK的特定α-和gamma亚基亚型。与假手术对照组相比,缺血性左心室中左冠状动脉闭塞激活了免疫沉淀的α(1)-亚型(6倍,P <0.01)和α(2)-亚型(9倍,P <0.01)。 α亚基激活的程度取决于缺血程度和平行的超声心动图收缩功能障碍。监管γ(1)和γ(2)异构体在心脏中表达。伽玛(1)和伽玛(2)异构体与阿尔法(1)和阿尔法(2)异构体与α亚基含量成比例共免疫沉淀。 γ(1)-异构体免疫复合物占心脏中AMPK活性和AMPK磷酸化(Thr(172))的70%。缺血类似地增加与γ(1)-和γ(2)-异构体复合物相关的AMPK活性三倍(每种P <0.01)。因此,AMPK催化的alpha(1)-和alpha(2)-异构体在体内被局部局部缺血激活,而与它们所复合的调节性gamma(1)-或gamma(2)-异构体无关。尽管gamma(2)-isoform突变的病理生理重要性,gamma(1)-isoform复杂占缺血性心脏的大多数AMPK活动。

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