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首页> 外文期刊>Biochemistry >The Isoform-Specific Region of the Na,K-ATPase Catalytic Subunit: Role in Enzyme Kinetics and Regulation by Protein Kinase C.
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The Isoform-Specific Region of the Na,K-ATPase Catalytic Subunit: Role in Enzyme Kinetics and Regulation by Protein Kinase C.

机译:Na,K-ATPase催化亚基的亚型特异性区域:在酶动力学和蛋白激酶C调控中的作用。

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摘要

Comparisons of the primary structures of the Na,K-ATPase alpha-isoforms reveal the existence of regions of structural divergence, suggesting that they are involved in unique functions. One of these regions is the isoform-specific region (ISR), located near the ATP binding site in the major cytoplasmic loop. To evaluate its importance, we constructed mutants of the rodent wild-type alpha1 and alpha3 isoforms in which the ISR was replaced with irrelevant sequences, i.e., the analogous region from the rat gastric H,K-ATPase catalytic subunit or a region from the human c-myc oncogene. Opossum kidney (OK) cells were transfected with wild-type rat alpha1, alpha3, or their corresponding chimeras and selected in ouabain. Introduction of either mutant produced ouabain-resistant colonies, consistent with functional expression of the chimeric protein and indicating that the ISR is not essential for overall Na,K-ATPase function. The introduced chimeras were then characterized enzymatically by measuring the relative rate of K(+) and Li(+) deocclusions. Results showed that exchanges of both alpha1 and alpha3 ISRs significantly modified the sensitivity for the enzyme to either K(+) or Li(+). Subsequent treatment of the cells with phorbol esters revealed an altered Na,K-ATPase transport in response to protein kinase C activation for the alpha1 chimeras. No changes were observed for the alpha3 isoform, suggesting that it is not sensitive to PKC regulation. These results demonstrated that the ISR plays an important role in ion deocclusion and in the response to PKC (only for the alpha1 isoform).
机译:Na,K-ATPaseα-同工型的一级结构的比较表明存在结构差异的区域,表明它们参与独特的功能。这些区域之一是同工型特异性区域(ISR),位于主要细胞质环中的ATP结合位点附近。为了评估其重要性,我们构建了啮齿动物野生型alpha1和alpha3同工型的突变体,其中ISR被无关序列取代,即大鼠胃H,K-ATPase催化亚基的相似区域或人类的区域c-myc癌基因。用野生型大鼠alpha1,alpha3或它们相应的嵌合体转染负鼠肾(OK)细胞,并在哇巴因中进行选择。引入任一突变体均会产生哇巴因抗性菌落,这与嵌合蛋白的功能性表达相符,并表明ISR对于Na,K-ATPase的整体功能不是必需的。然后通过测量K(+)和Li(+)脱嵌的相对速率对引入的嵌合体进行酶促表征。结果表明,alpha1和alpha3 ISR的交换显着改变了该酶对K(+)或Li(+)的敏感性。随后用佛波酯处理细胞,发现响应于α1嵌合体的蛋白激酶C活化,Na,K-ATPase转运发生改变。没有观察到alpha3亚型的变化,表明它对PKC调节不敏感。这些结果表明,ISR在离子解吸和对PKC的反应中起重要作用(仅对于alpha1同工型)。

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