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哇巴因在鸭盐腺质膜生物合成过程中的结合

Ouabain binding during plasma membrane biogenesis in duck salt gland.

作者信息

Hossler F E, Sarras M P, Barrnett R J

出版信息

J Cell Sci. 1978 Jun;31:179-97. doi: 10.1242/jcs.31.1.179.

Abstract

The conditions necessary for optimal ouabain binding in the avian salt gland were examined. Binding was enhanced by ATP and Mg2+ and was decreased by K+, but was unaffected by added Na+. Both maximal binding and complete inhibition of Na, K-ATPase activity were obtained at 1 X 10(-6) M ouabain. Half maximal binding and half maximal inhibition of Na, K-ATPase activity were obtained at 1.7 X 10(-7) M ouabain. Ouabain binding increased in parallel with increasing specific activity of the Na, K-ATPase duringsalt-induced salt gland specialization. The ratio of Na, K-ATPase activity to ouabain-binding sites remained constant during the salt stress as well as after removal of the salt diet. Autoradiography indicated binding to partially and fully differentiated secretory cells of the salt gland. The ouabain binding assay appeared to be a more useful indicator of membrane amplification than Na, K-ATPase activity since it is rapid, essentially irreversible, less sensitive to tissue fixatives, and quantitatively measured the number of enzyme molecules.

摘要

研究了禽盐腺中哇巴因最佳结合所需的条件。ATP和Mg2+可增强结合,K+可降低结合,但添加Na+对其无影响。在1×10(-6) M哇巴因浓度下可获得最大结合以及对Na,K-ATP酶活性的完全抑制。在1.7×10(-7) M哇巴因浓度下可获得半数最大结合以及对Na,K-ATP酶活性的半数最大抑制。在盐诱导的盐腺特化过程中,哇巴因结合与Na,K-ATP酶比活性的增加呈平行关系。在盐胁迫期间以及去除盐饮食后,Na,K-ATP酶活性与哇巴因结合位点的比例保持恒定。放射自显影显示与盐腺部分和完全分化的分泌细胞结合。与Na,K-ATP酶活性相比,哇巴因结合测定似乎是膜扩增更有用的指标,因为它快速、基本不可逆、对组织固定剂不太敏感,并且可定量测量酶分子的数量。

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