首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Membrane Region M2C2 in Subunit KtrB of the K+ Uptake System KtrAB from Vibrio alginolyticus Forms a Flexible Gate Controlling K+ Flux
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Membrane Region M2C2 in Subunit KtrB of the K+ Uptake System KtrAB from Vibrio alginolyticus Forms a Flexible Gate Controlling K+ Flux

机译:溶藻弧菌K +吸收系统KtrAB的亚基KtrB中的膜区域M2C2形成了控制K +通量的灵活闸门

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摘要

Transmembrane stretch M2C from the bacterial K+-translocating protein KtrB is unusually long. In its middle part, termed M2C2, it contains several small and polar amino acids. This region is flanked by the two α-helices M2C1 and M2C3 and may form a flexible gate at the cytoplasmic side of the membrane controlling K+ translocation. In this study, we provide experimental evidence for this notion by using continuous wave and pulse EPR measurements of single and double spin-labeled cysteine variants of KtrB. Most of the spin-labeled residues in M2C2 were shown to be immobile, pointing to a compact structure. However, the high polarity revealed for the microenvironment of residue positions 317, 318, and 327 indicated the existence of a water-accessible cavity. Upon the addition of K+ ions, M2C2 residue Thr-318R1 (R1 indicates the bound spin label) moved with respect to M2B residue Asp-222R1 and M2C3 residue Val-331R1 but not with respect to M2C1 residue Met-311R1. Based on distances determined between spin-labeled residues of double-labeled variants of KtrB in the presence and absence of K+ ions, structural models of the open and closed conformations were developed.
机译:细菌K + 易位蛋白KtrB的跨膜拉伸M2C异常长。在其中间部分称为M2C2,它包含几个小的极性氨基酸。该区域的两侧是两个α螺旋M2C1和M2C3,可以在控制K + 移位的膜的细胞质侧形成柔性门。在这项研究中,我们通过对单个和两个自旋标记的KtrB半胱氨酸变体进行连续波和脉冲EPR测量,为这一概念提供了实验证据。 M2C2中大多数自旋标记的残基被证明是不动的,指向紧凑的结构。但是,对于残基位置317、318和327的微环境显示出高极性,表明存在水通道。添加K + 离子后,M2C2残基Thr-318R1(R1表示结合的自旋标记)相对于M2B残基Asp-222R1和M2C3残基Val-331R1相对但不相对于M2C1残基移动Met-311R1。基于在存在和不存在K + 离子的情况下,KtrB的双标记变体的自旋标记残基之间的距离,建立了开放和闭合构象的结构模型。

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