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(钠+钾)依赖性三磷酸腺苷酶与无机磷酸盐的反应。受钠、钾和核苷酸的调节。

Reaction of (Na+ + K+)-dependent adenosine triphosphatase with inorganic phosphate. Regulation by Na+, K+, and nucleotides.

作者信息

Askari A, Huang W H

出版信息

J Biol Chem. 1984 Apr 10;259(7):4169-76.

PMID:6323461
Abstract

Effects of Na+, K+, and nucleotides on Mg2+-dependent phosphorylation of (Na+ + K+)-dependent adenosine triphosphatase by Pi were studied under equilibrium conditions. Na+ was a linear competitive inhibitor with respect to Mg2+ and a mixed inhibitor with respect to Pi. K+ was a partial inhibitor; it interacted with positive cooperativity and induced negative cooperativities in the interactions of Mg2+ and Pi with the enzyme. Adenyl-5'-yl (beta, gamma-methylene)diphosphonate, a nonhydrolyzable analog of ATP, interacted with negative cooperativity to inhibit phosphorylation in competition with Pi. ATP was also a competitive inhibitor. Na+ and K+ acted antagonistically, Na+ and nucleotides inhibited synergistically, and K+ and nucleotides were mutually exclusive. In the presence of ouabain, when nucleotides were excluded from the site inhibiting phosphorylation, a low affinity regulatory site for nucleotides became apparent, the occupation of which reduced the rate of dephosphorylation and the initial rate of phosphorylation of the enzyme without affecting the equilibrium constant of the reaction of Pi with the ouabain-complexed enzyme. The regulatory site was also detected in the absence of ouabain. The data suggest that catalytic and transport functions of the oligomeric enzyme may be regulated by homotropic and heterotropic site-site interactions, ligand-induced slow isomerizations, and distinct catalytic and regulatory sites for ATP.

摘要

在平衡条件下研究了Na⁺、K⁺和核苷酸对Pi介导的(Na⁺ + K⁺)依赖性三磷酸腺苷酶的Mg²⁺依赖性磷酸化的影响。Na⁺是Mg²⁺的线性竞争性抑制剂,是Pi的混合型抑制剂。K⁺是部分抑制剂;它以正协同性相互作用,并在Mg²⁺和Pi与酶的相互作用中诱导负协同性。腺苷-5'-基(β,γ-亚甲基)二磷酸酯,一种ATP的不可水解类似物,以负协同性相互作用,在与Pi竞争中抑制磷酸化。ATP也是竞争性抑制剂。Na⁺和K⁺起拮抗作用,Na⁺和核苷酸协同抑制,K⁺和核苷酸相互排斥。在哇巴因存在下,当核苷酸被排除在抑制磷酸化的位点之外时,一个低亲和力的核苷酸调节位点变得明显,占据该位点会降低酶的去磷酸化速率和磷酸化初始速率,而不影响Pi与哇巴因复合酶反应的平衡常数。在没有哇巴因的情况下也检测到了该调节位点。数据表明,寡聚酶的催化和转运功能可能受同促和异促位点-位点相互作用、配体诱导的缓慢异构化以及ATP的不同催化和调节位点的调控。

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