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阴离子泵催化亚基的特性分析

Characterization of the catalytic subunit of an anion pump.

作者信息

Hsu C M, Rosen B P

机构信息

Department of Biochemistry, Wayne State University, School of Medicine, Detroit, Michigan 48201.

出版信息

J Biol Chem. 1989 Oct 15;264(29):17349-54.

PMID:2477369
Abstract

The ArsA protein, the 63-kDa catalytic subunit of an oxyanion-translocating ATPase, was purified by successive chromatography using Q-Sepharose, red agarose, and phenyl-Sepharose to a specific activity in excess of 1 mumol of ATP hydrolyzed per min per mg of protein. ATPase activity was dependent on the presence of the oxyanionic substrates. Inhibitors of other classes of ion-translocating ATPases had no effect on ArsA ATPase activity, including N,N'-dicyclohexyl-carbodiimide, azide, vanadate, and nitrate. The apparent Km for ATP was determined to be 0.13 mM. The optimal pH range for ATP hydrolysis was 7.5 to 7.8. ATPase activity required Mg2+ at a molar ratio of 2 ATP:1 Mg2+. Limited proteolysis by trypsin was used to study conformational changes produced upon binding of substrates to the ArsA protein. In the absence of substrates, the ArsA protein was rapidly cleaved by trypsin to a major product of 30 kDa. ATP was partially protected from trypsin digestion, while the anionic substrate antimonite alone had no effect on proteolysis. Combination of the two substrates nearly completely protected the ArsA protein from proteolysis. Proteolytic cleavage correlated with loss of anion-stimulated ATPase activity and substrate protection from cleavage correlated with retention of activity. These results demonstrate that ATP and antimonite together produce a conformational change which is different from that of the ArsA protein in the presence of either substrate alone and suggest interaction between the oxyanion and ATP binding sites.

摘要

ArsA蛋白是一种氧阴离子转运ATP酶的63 kDa催化亚基,通过使用Q-琼脂糖、红色琼脂糖和苯基琼脂糖进行连续层析纯化,其比活性超过每分钟每毫克蛋白质水解1 μmol ATP。ATP酶活性依赖于氧阴离子底物的存在。其他类型的离子转运ATP酶抑制剂对ArsA ATP酶活性没有影响,包括N,N'-二环己基碳二亚胺、叠氮化物、钒酸盐和硝酸盐。ATP的表观Km值测定为0.13 mM。ATP水解的最佳pH范围是7.5至7.8。ATP酶活性需要Mg2+,摩尔比为2 ATP:1 Mg2+。用胰蛋白酶进行有限的蛋白水解来研究底物与ArsA蛋白结合时产生的构象变化。在没有底物的情况下,ArsA蛋白被胰蛋白酶迅速切割成30 kDa的主要产物。ATP对胰蛋白酶消化有部分保护作用,而单独的阴离子底物亚锑酸盐对蛋白水解没有影响。两种底物的组合几乎完全保护ArsA蛋白不被蛋白水解。蛋白水解切割与阴离子刺激的ATP酶活性丧失相关,而底物对切割的保护与活性保留相关。这些结果表明,ATP和亚锑酸盐一起产生的构象变化与单独存在任何一种底物时ArsA蛋白的构象变化不同,并表明氧阴离子和ATP结合位点之间存在相互作用。

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