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粪链球菌的钒酸盐敏感ATP酶在重组系统中泵入钾。

The vanadate-sensitive ATPase of Streptococcus faecalis pumps potassium in a reconstituted system.

作者信息

Fürst P, Solioz M

出版信息

J Biol Chem. 1986 Mar 25;261(9):4302-8.

PMID:2936740
Abstract

The vanadate-sensitive ATPase of Streptococcus faecalis, purified to homogeneity, was reconstituted into soybean phospholipid vesicles in a functional state. Freeze-fracture electron micrographs revealed a relatively uniform population of unilamellar liposomes of 50-100 nm in diameter, with particles protruding from both fracture faces. Transport studies with 42K+ and with a K+-selective electrode showed that the ATP-ase catalyzes electrogenic potassium extrusion in proteoliposomes. The following parameters for potassium transport in the reconstituted system were determined: K+/ATP stoichiometry = 1, Km for potassium = 1.4 mM, Vmax = 0.1 mumol/min/mg. The ATPase could be activated by an electrical membrane potential, vesicle interior positive. This ATPase thus appears to function as a potential regulated, ATP-driven pump that serves in electrogenic potassium accumulation by the bacterial cell.

摘要

粪肠球菌对钒酸盐敏感的ATP酶经纯化达到同质后,以功能状态重组到大豆磷脂囊泡中。冷冻蚀刻电子显微镜照片显示,有一群相对均匀的单层脂质体,直径为50 - 100纳米,在两个蚀刻面上都有颗粒突出。用42K +和钾选择性电极进行的转运研究表明,该ATP酶催化蛋白脂质体中的电致钾离子外排。测定了重组系统中钾转运的以下参数:K + /ATP化学计量比 = 1,钾的米氏常数 = 1.4 mM,最大反应速度 = 0.1 μmol/分钟/毫克。该ATP酶可被膜电位激活,囊泡内部为正电位。因此,这种ATP酶似乎起着一种电位调节的、由ATP驱动的泵的作用,用于细菌细胞的电致钾离子积累。

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