犬心脏部分纯化Na+,K+- atp酶的鉴定。

Advances in myocardiology Pub Date : 1985-01-01
P V Sulakhe, V Elimban, N S Dhalla
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引用次数: 0

摘要

分离膜上对瓦巴因敏感的Na+,K+- atp酶代表了完整组织中存在的“Na+泵”的生化相关性,并负责Na+和K+在细胞膜上的不同分布。该酶已从多种来源纯化,其性质已被报道。然而,只有有限数量的研究涉及心脏Na+,K+- atp酶。我们用脱氧胆酸溶解狗心脏中的该酶,并通过NaI处理进一步纯化。该方法得到了高比活性的酶制剂(140微摩尔/毫克蛋白质每小时)。注意到以下特征:(1)对瓦苦因敏感和对瓦苦因不敏感的atp酶的pH最优值分别为7.4和大于9.0;(2) Ca2+和瓦巴因的抑制作用,后者的作用本质上是变构的;(3)巯基试剂(n-乙基马来酰亚胺、对氯脲苯甲酸酯)对瓦阿巴因敏感的atp酶有抑制作用,但对-不敏感的酶没有抑制作用。所有这些性质与分离的质膜(肌膜)相似,表明纯化过程没有改变Na+泵的单价和二价相互作用位点以及digitalis识别域的性质。因此,这些结果有助于进一步了解这种对心肌功能至关重要的矢量泵的调节。
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Characterization of a partially purified Na+,K+-ATPase from dog heart.

Ouabain-sensitive Na+,K+-ATPase of isolated membranes represents a biochemical correlate of the "Na+ pump" that is present in intact tissue and is responsible for dissimilar distributions of Na+ and K+ across cellular plasma membranes. The enzyme has been purified from a variety of sources and its properties have been reported. Only a limited number of studies, however, deal with the cardiac Na+,K+-ATPase. We solubilized this enzyme from dog heart with deoxycholate and effected its further purification by NaI treatment. The method yielded an enzyme preparation of high specific activity (140 mumole/mg protein per hr). The following characteristics were noted: (1) pH optima of 7.4 and greater than 9.0 for ouabain-sensitive and -insensitive ATPases; (2) inhibition by Ca2+ and ouabain, the latter effect being allosteric in nature; (3) inhibition by sulfhydryl reagents (N-ethylmaleimide, p-chloromercuribenzoate) of the ouabain-sensitive ATPase but not of the -insensitive enzyme activity. All these properties resembled those seen in isolated plasma membranes (sarcolemma), suggesting that the purification procedure did not alter the properties of mono- and divalent interacting sites as well as a digitalis recognition domain of the Na+ pump. These results thus aid in further understanding the regulation of this vectorial pump that is critical in myocardial function.

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Influence of Na/K pump current on action potentials in Purkinje fibers. The effects of intracellular Na on contraction and intracellular pH in mammalian cardiac muscle. Molecular approach to the calcium channel. The measurement of cardiac membrane channels following their incorporation into phospholipid bilayers. Calmodulin in the regulation of calcium fluxes in cardiac sarcolemma.
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