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一种阴离子泵的分子分析:ArsC蛋白的纯化

Molecular analysis of an anion pump: purification of the ArsC protein.

作者信息

Rosen B P, Weigel U, Monticello R A, Edwards B P

机构信息

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

出版信息

Arch Biochem Biophys. 1991 Feb 1;284(2):381-5. doi: 10.1016/0003-9861(91)90312-7.

Abstract

The ars operon of resistance plasmid R773 encodes an anion-translocating ATPase which catalyzes extrusion of the oxyanions arsenite, antimonite, and arsenate, thus providing resistance to the toxic compounds. Although both arsenite and arsenate contain arsenic, they have different chemical properties. In the absence of the arsC gene the pump transports arsenite and antimonite, oxyanions with the +III oxidation state of arsenic or antimony. The complex neither transports nor provides resistance to arsenate, the oxyanion of the +V oxidation state of arsenic. The arsC gene encodes a 16-kDa polypeptide, the ArsC protein, which alters the substrate specificity of the pump to allow for recognition and transport of the alternate substrate arsenate. The arsC gene was cloned behind a strong promoter and expressed at high levels. The ArsC protein was purified and crystallized.

摘要

抗性质粒R773的ars操纵子编码一种阴离子转运ATP酶,该酶催化亚砷酸盐、亚锑酸盐和砷酸盐等含氧阴离子的外排,从而赋予对这些有毒化合物的抗性。虽然亚砷酸盐和砷酸盐都含有砷,但它们具有不同的化学性质。在缺乏arsC基因的情况下,该泵转运亚砷酸盐和亚锑酸盐,即砷或锑处于+III氧化态的含氧阴离子。该复合物既不转运砷酸盐(砷处于+V氧化态的含氧阴离子),也不赋予对其的抗性。arsC基因编码一种16 kDa的多肽,即ArsC蛋白,它改变了泵的底物特异性,从而允许识别和转运替代底物砷酸盐。arsC基因被克隆到一个强启动子后面并高水平表达。ArsC蛋白被纯化并结晶。

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