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氟铝酸盐复合物是肌浆网Ca(2+)-ATP酶中磷酸盐的双功能类似物。

Fluoroaluminate complexes are bifunctional analogues of phosphate in sarcoplasmic reticulum Ca(2+)-ATPase.

作者信息

Troullier A, Girardet J L, Dupont Y

机构信息

Département de Biologie Moléculaire et Structurale, Centre d'Etudes Nucléaires de Grenoble, France.

出版信息

J Biol Chem. 1992 Nov 15;267(32):22821-9.

PMID:1429630
Abstract

The mechanism of inhibition of the sarcoplamc reticulum (SR) Ca(2+)-ATPase by the fluoroaluminate complexes was investigated. First, AlF4- was shown to bind to the Ca(2+)-free conformation of the enzyme by a slow quasi-irreversible process. The rate constants of the reaction are k+ = 16 x 10(3) M-1 s-1 and k- < 1.5 10(-3) s-1. We directly measured a stoichiometry of about 4.8 nmol of AlF4- bound/mg of protein. Mg2+ was a necessary cofactor for the reaction with a dissociation constant of 3 mM. It was demonstrated (Dupont, Y., and Pougeois, R. (1983) FEBS Lett. 156, 93-98) that phosphorylation by P(i) induced a dehydration of the catalytic site. The same process has been shown here to occur upon AlF4- binding either by the use of Me2SO or by demonstration of an increase of bound 2',3'-O-(2,4,6-trinitrocyclohexadienyldene)adenosine triphosphate fluorescence. Phosphorylation by P(i) is inhibited by the binding of AlF4-. Second, a fluoroaluminate complex, presumably AlF4-, was also shown to bind to the Ca(2+)-bound conformation of the Ca(2+)-ATPase in the presence of ADP and stabilize a E1.Ca2.ADP.AlFx complex. The dissociation constant of the nucleotidic site for ADP was shifted to the micromolar range. The Ca2+ ions bound on the external high affinity sites became occluded upon binding of (ADP + AlFx). We propose that AlF4- mimics P(i) binding to the Ca(2+)-free conformation of the ATPase and stabilizes an intermediate similar to the acyl-phosphate derivative; it also acts as an analogue of the gamma-phosphate of ATP and stabilizes an E1.[Ca2].ADP.AlF4 complex where the Ca2+ ions are occluded.

摘要

研究了氟铝酸盐配合物对肌浆网(SR)Ca(2+)-ATP酶的抑制机制。首先,AlF4-通过一个缓慢的准不可逆过程与酶的无Ca(2+)构象结合。该反应的速率常数为k+ = 16×10(3) M-1 s-1,k- < 1.5×10(-3) s-1。我们直接测定了每毫克蛋白质结合约4.8 nmol AlF4-的化学计量比。Mg2+是该反应的必要辅助因子,其解离常数为3 mM。已证明(杜邦,Y.,和普瓦捷,R.(1983年)《欧洲生物化学会联合会快报》156,93 - 98),Pi磷酸化会导致催化位点脱水。在此通过使用二甲基亚砜或通过证明结合的2',3'-O-(2,4,6-三硝基环己二烯亚基)三磷酸腺苷荧光增加,表明在AlF4-结合时也会发生相同过程。Pi磷酸化受到AlF4-结合的抑制。其次,一种氟铝酸盐配合物,可能是AlF4-,在存在ADP的情况下也被证明与Ca(2+)-ATP酶的Ca(2+)结合构象结合,并稳定E1.Ca2.ADP.AlFx复合物。ADP核苷酸位点的解离常数移至微摩尔范围。在结合(ADP + AlFx)时,结合在外部高亲和力位点上的Ca2+离子被封闭。我们提出,AlF4-模拟Pi与ATP酶的无Ca(2+)构象结合,并稳定一种类似于酰基磷酸衍生物的中间体;它还充当ATPγ-磷酸的类似物,并稳定一种E1.[Ca2].ADP.AlF4复合物,其中Ca2+离子被封闭。

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