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首页> 外文期刊>The biochemical journal >K+-stimulated p-nitrophenyl phosphatase is not a partial reaction of the gastric (H+ + K+)-transporting ATPase. Evidence supporting a new model for the univalent-cation-transporting ATPase systems
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K+-stimulated p-nitrophenyl phosphatase is not a partial reaction of the gastric (H+ + K+)-transporting ATPase. Evidence supporting a new model for the univalent-cation-transporting ATPase systems

机译:K +刺激的对硝基苯基磷酸酶不是胃(H + + K +)转运ATPase的部分反应。支持单价阳离子转运ATPase系统新模型的证据

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pStudies with intact and lysed gastric microsomal vesicles demonstrate that there are two pNPP (p-nitrophenyl phosphate)-and one ATP-hydrolytic sites within the gastric H+, K+-ATPase [(H+ + K+)-transporting ATPase] complex. Whereas the ATPase site is located exclusively on the vesicle exterior, the pNPPase sites are distributed equally on both sides of the bilayer. Competition by ATP for the pNPPase reaction on the vesicle exterior suggests that both ATP and pNPP are hydrolysed at the same catalytic site present at the outside surface of the intact vesicles. However, a biphasic inhibition of the K+-pNPPase (K+-stimulated pNPPase) by ATP in the lysed vesicles suggest the pNPPase site of the vesicle interior to have very low affinity (Ki approximately equal to 1.2 mM) for ATP compared with the vesicle exterior (Ki approximately equal to 0.2 mM). Studies with spermine, which competes with K+ for the K+-pNPPase reaction without inhibiting the H+, K+-ATPase, suggest there are two separate K+ sites for the pNPPase reaction and another distinct K+ site for the ATPase reaction. In contrast with the K+ site for the ATPase, which is located opposite to the catalytic site across the bilayer, both the K+ and the catalytic site for the pNPPase are located on the same side. The data clearly demonstrate that the pNPPase is not a manifestation of the phosphatase step of the total H+, K+-ATPase reaction. The K+-pNPPase associated with the Na+, K+-ATPase also has properties strikingly similar to the gastric K+-pNPPase system, suggesting a resemblance in the basic operating principle of the two ion-transporting enzymes. A unified model has been proposed to explain the present data and many other observations reported in the literature for the ATPase-mediated transport of univalent cations./p
机译:具有完整和溶解的胃微粒体囊泡的研究表明,胃H +,K + -ATPase [(H + + K +)-转运ATPase]复合物中有两个pNPP(对硝基苯基磷酸酯)和一个ATP水解位点。 ATPase位点仅位于囊泡外部,而pNPPase位点在双层的两侧均等分布。 ATP对囊泡外部的pNPPase反应的竞争表明,ATP和pNPP都在完整囊泡外表面存在的相同催化位点水解。然而,裂解囊泡中的ATP对K + -pNPPase(K +刺激的pNPPase)的双相抑制表明,与囊泡外部相比,囊泡内部的pNPPase位点对ATP的亲和力非常低(Ki约等于1.2 mM)。 (Ki大约等于0.2 mM)。用精胺与K +竞争K + -pNPPase反应而不抑制H +,K + -ATPase的研究表明,pNPPase反应有两个单独的K +位点,而ATPase反应有另一个不同的K +位点。与ATPase的K +位点(与跨双层的催化位点相对)相反,KN和pNPPase的催化位点都位于同一侧。数据清楚地表明,pNPPase不是总H +,K + -ATPase反应中磷酸酶步骤的表现。与Na +,K + -ATP酶相关的K + -pNPPase也具有与胃K + -pNPPase系统非常相似的性质,表明这两种离子转运酶的基本操作原理相似。提出了一个统一的模型来解释目前的数据以及文献中报道的有关ATPase介导的单价阳离子迁移的许多其他观察结果。

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