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来自溶藻弧菌的KtrAB系统中,KtrB蛋白的所有四个假定的选择性过滤器甘氨酸残基对于高亲和力和选择性摄取钾离子至关重要。

All four putative selectivity filter glycine residues in KtrB are essential for high affinity and selective K+ uptake by the KtrAB system from Vibrio alginolyticus.

作者信息

Tholema Nancy, Vor der Brüggen Marc, Mäser Pascal, Nakamura Tatsunosuke, Schroeder Julian I, Kobayashi Hiroshi, Uozumi Nobuyuki, Bakker Evert P

机构信息

Abteilung Mikrobiologie, Universität Osnabrück, D-49069 Osnabrück, Germany.

出版信息

J Biol Chem. 2005 Dec 16;280(50):41146-54. doi: 10.1074/jbc.M507647200. Epub 2005 Oct 6.

Abstract

The subunit KtrB of bacterial Na+-dependent K+-translocating KtrAB systems belongs to a superfamily of K+ transporters. These proteins contain four repeated domains, each composed of two transmembrane helices connected by a putative pore loop (p-loop). The four p-loops harbor a conserved glycine residue at a position equivalent to a glycine selectivity filter residue in K+ channels. We investigated whether these glycines also form a selectivity filter in KtrB. The single residues Gly70, Gly185, Gly290, and Gly402 from p-loops P(A) to P(D) of Vibrio alginolyticus KtrB were replaced with alanine, serine, or aspartate. The three alanine variants KtrB(A70), KtrB(A185), and KtrB(A290) maintained a substantial activity in KtrAB-mediated K+ uptake in Escherichia coli. This activity was associated with a decrease in the affinity for K+ by 2 orders of magnitude, with little effect on Vmax. Minor activities were also observed for three other variants: KtrB(A402), KtrB(S70), and KtrB(D185). With all of these variants, the property of Na+ dependence of K+ transport was preserved. Only the four serine variants mediated Na+ uptake, and these variants differed considerably in their K+/Na+ selectivity. Experiments on cloned ktrB in the pBAD18 vector showed that V. alginolyticus KtrB alone was still active in E. coli. It mediated Na+-independent, slow, high affinity, and mutation-specific K+ uptake as well as K+-independent Na+ uptake. These data demonstrate that KtrB contains a selectivity filter for K+ ions and that all four conserved p-loop glycine residues are part of this filter. They also indicate that the role of KtrA lies in conferring velocity and ion coupling to the Ktr complex.

摘要

细菌依赖钠离子的钾离子转运蛋白KtrAB系统的亚基KtrB属于钾离子转运蛋白超家族。这些蛋白质包含四个重复结构域,每个结构域由两个跨膜螺旋组成,中间由一个假定的孔环(p环)连接。四个p环在与钾离子通道中甘氨酸选择性过滤器残基相当的位置含有一个保守的甘氨酸残基。我们研究了这些甘氨酸是否也在KtrB中形成选择性过滤器。将溶藻弧菌KtrB的p环P(A)至P(D)中的单个残基Gly70、Gly185、Gly290和Gly402替换为丙氨酸、丝氨酸或天冬氨酸。三个丙氨酸变体KtrB(A70)、KtrB(A185)和KtrB(A290)在大肠杆菌中KtrAB介导的钾离子摄取中保持了相当大的活性。这种活性与对钾离子的亲和力降低2个数量级有关,对最大反应速度影响很小。另外三个变体KtrB(A402)、KtrB(S70)和KtrB(D185)也观察到了较小的活性。对于所有这些变体,钾离子运输对钠离子的依赖性特性得以保留。只有四个丝氨酸变体介导钠离子摄取,并且这些变体在钾离子/钠离子选择性方面有很大差异。在pBAD18载体中克隆的ktrB上进行的实验表明,单独的溶藻弧菌KtrB在大肠杆菌中仍然具有活性。它介导不依赖钠离子的、缓慢的、高亲和力的和突变特异性的钾离子摄取以及不依赖钾离子的钠离子摄取。这些数据表明,KtrB含有一个钾离子选择性过滤器,并且所有四个保守的p环甘氨酸残基都是该过滤器的一部分

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