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用锰取代镁会改变(钠+钾)-ATP酶的某些反应特性。

Substituting manganese for magnesium alters certain reaction properties of the (Na+ + K+)-ATPase.

作者信息

Robinson J D

出版信息

Biochim Biophys Acta. 1981 Apr 6;642(2):405-17. doi: 10.1016/0005-2736(81)90456-9.

Abstract

MnCl2 was partially effective as a substitute for MgCl2 in activating the K+- dependent phosphatase reaction catalyzed by a purified (Na+ + K+)-ATPase enzyme preparation from canine kidney medulla, the maximal velocity attainable being one-fourth that with MgCl2. Estimates of the concentration of free Mn2+ available when the reaction was half-maximally stimulated lie in the range of the single high-affinity divalent cation site previously identified (Grisham, C.M. and Mildvan, A.S. (1974) J. Biol. Chem. 249, 3187--3197). MnCl2 competed with MgCl2 as activator of the phosphatase reaction, again consistent with action through a single site. However, with MnCl2 appreciable ouabain-inhibitable phosphatase activity occurred in the absence of added KCl, and the apparent affinities for K+ as activator of the reaction and for Na+ as inhibitor were both decreased. For the (Na+ + K+)-ATPase reaction substituting MnCl2 for MgCl2 was also partially effective, but no stimulation in the absence of added KCl, in either the absence or presence of NaCl, was detectable. Moreover, the apparent affinity for K+ was increased by the substitution, although that for Na+ was decreased as in the phosphatase reaction. Substituting MnCl2 also altered the sensitivity to inhibitors. For both reactions the inhibition by ouabain and by vanadate was increased, as was binding of [48V] -vanadate to the enzyme; furthermore, binding in the presence of MnCl2 was, unlike that with MgCl2, insensitive to KCl and NaCl. Inhibition of the phosphatase reaction by ATP was decreased with 1 mM but not 10 mM KCl. Finally, inhibition of the (Na+ + K+)-ATPase reaction by Triton X-100 was increased, but that by dimethylsulfoxide decreased after such substitution. These findings are considered in terms of Mn2+ at the divalent cation site being a better selector than Mg2+ of the E2 conformational states of the enzyme, states also selected by K+ and by dimethylsulfoxide and reactive with ouabain and vanadate; the E1 conformational states, by contrast, are those selected by Na+ and ATP, and also by Triton X-100.

摘要

在激活由犬肾髓质纯化的(Na⁺ + K⁺)-ATP酶制剂催化的钾依赖性磷酸酶反应中,氯化锰(MnCl₂)作为氯化镁(MgCl₂)的替代品有部分效果,所能达到的最大速度是使用氯化镁时的四分之一。当反应受到半最大刺激时,可利用的游离锰离子(Mn²⁺)浓度估计值处于先前确定的单个高亲和力二价阳离子位点的范围内(格里森姆,C.M.和米尔德万,A.S.(1974年)《生物化学杂志》249,3187 - 3197)。氯化锰作为磷酸酶反应的激活剂与氯化镁竞争,这再次与通过单个位点起作用一致。然而,使用氯化锰时,在不添加氯化钾(KCl)的情况下会出现明显的哇巴因可抑制的磷酸酶活性,并且反应激活剂钾离子(K⁺)和抑制剂钠离子(Na⁺)的表观亲和力均降低。对于(Na⁺ + K⁺)-ATP酶反应,用氯化锰替代氯化镁也有部分效果,但在不添加氯化钾的情况下,无论有无氯化钠(NaCl),均未检测到刺激作用。此外,通过替代,对钾离子的表观亲和力增加,尽管对钠离子的表观亲和力如在磷酸酶反应中一样降低。替代氯化锰也改变了对抑制剂的敏感性。对于这两种反应,哇巴因和钒酸盐的抑制作用均增强,[⁴⁸V] - 钒酸盐与酶的结合也增强;此外,与使用氯化镁时不同,在氯化锰存在下的结合对氯化钾和氯化钠不敏感。在1 mM氯化钾存在下,ATP对磷酸酶反应的抑制作用降低,但在10 mM氯化钾存在下则不然。最后,用 Triton X - 100对(Na⁺ + K⁺)-ATP酶反应的抑制作用增强,但用二甲基亚砜替代后抑制作用降低。这些发现被认为是由于二价阳离子位点处的锰离子比镁离子更能选择酶的E₂构象状态,这些状态也由钾离子、二甲基亚砜选择,并且与哇巴因和钒酸盐反应;相比之下,E₁构象状态是由钠离子、ATP以及 Triton X - 100选择的。

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