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缬氨霉素和单价阳离子与骨骼肌肌浆网(Ca2 +,Mg2 +)-ATP酶的相互作用。

Interaction of valinomycin and monovalent cations with the (Ca2+,Mg2+)-ATPase of skeletal muscle sarcoplasmic reticulum.

作者信息

Davidson G A, Berman M C

出版信息

J Biol Chem. 1985 Jun 25;260(12):7325-9.

PMID:3158656
Abstract

The interactions of monovalent cations and of the K+-specific ionophore, valinomycin, with the Ca2+-ATPase of skeletal muscle of sarcoplasmic reticulum have been studied in the absence of cation gradients by their effects on enzyme turnover and on the ATP plus Ca2+-dependent enhanced fluorescence of the ATP analogue, 2',3'-O-(2,4,6-trinitrocyclohexyldienylidine)-adenosine 5'-triphosphate (TNP-ATP) (Watanabe, T., and Inesi, G. (1982) J. Biol. Chem. 257, 11510-11516). Monovalent cations decreased turnover-dependent TNP-ATP fluorescence in the series K+ greater than Rb+ approximately equal to Cs+ greater than Na+ greater than Li+ (K0.5 = 49, 73, 75, 94, and 246 mM, respectively), consistent with the known specificity of the monovalent cation binding site that stimulates turnover and E-P hydrolysis. Valinomycin (200 nmol/mg), in the absence of monovalent cations, decreased ATPase activity by 30% and abolished the stimulatory effects of 150 mM KCl or NaCl on turnover. The ionophore alone enhanced TNP-ATP fluorescence by 20% and altered the specificity and affinity of the site that inhibited TNP-ATP fluorescence to Cs+ greater than Rb+ greater than K+ approximately equal to Na+ greater than Li+ (K0.5 = 79, 111, 134, 136, and 270 mM, respectively), which follows the Hofmeister series for effectiveness of monovalent lyotropic cations. TNP-ATP binding was not affected by either monovalent cations or valinomycin. Inhibition of turnover-dependent TNP-ATP fluorescence appears to be a useful parameter for monitoring monovalent cation binding to the Ca2+-ATPase. It is concluded that the ionophore interacts directly with the Ca2+-ATPase, independent of its K+ conductance effects on the lipid bilayer, and modifies the affinity and specificity of the monovalent cation site, either by direct interaction or by the formation of a valinomycin-monovalent cation-enzyme complex.

摘要

在不存在阳离子梯度的情况下,通过一价阳离子和钾特异性离子载体缬氨霉素对肌浆网骨骼肌Ca2+-ATP酶的酶周转以及ATP类似物2',3'-O-(2,4,6-三硝基环己二烯叉)-腺苷5'-三磷酸(TNP-ATP)的ATP加Ca2+依赖性增强荧光的影响,研究了它们与该酶的相互作用(渡边,T.,和伊内西,G.(1982年)《生物化学杂志》257卷,11510 - 11516页)。一价阳离子按K+>Rb+≈Cs+>Na+>Li+的顺序降低了依赖于周转的TNP-ATP荧光(K0.5分别为49、73、75、94和246 mM),这与刺激周转和E-P水解的一价阳离子结合位点的已知特异性一致。在不存在一价阳离子的情况下,缬氨霉素(200 nmol/mg)使ATP酶活性降低30%,并消除了150 mM KCl或NaCl对周转的刺激作用。单独的离子载体使TNP-ATP荧光增强20%,并改变了抑制TNP-ATP荧光的位点的特异性和亲和力,变为Cs+>Rb+>K+≈Na+>Li+(K0.5分别为79、111、134、136和270 mM),这遵循一价离液序列阳离子有效性的霍夫迈斯特序列。TNP-ATP结合不受一价阳离子或缬氨霉素的影响。抑制依赖于周转的TNP-ATP荧光似乎是监测一价阳离子与Ca2+-ATP酶结合的一个有用参数。得出的结论是,离子载体直接与Ca2+-ATP酶相互作用,独立于其对脂质双层的K+传导效应,并通过直接相互作用或形成缬氨霉素-一价阳离子-酶复合物来改变一价阳离子位点的亲和力和特异性。

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