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淡紫链霉菌钾离子通道(SKC1)的结构动力学:寡聚化学计量与稳定性

Structural dynamics of the Streptomyces lividans K+ channel (SKC1): oligomeric stoichiometry and stability.

作者信息

Cortes D M, Perozo E

机构信息

Department of Molecular Physiology and Biological Physics, University of Virginia Health Sciences Center, Charlottesville, Virginia 22906-0011, USA.

出版信息

Biochemistry. 1997 Aug 19;36(33):10343-52. doi: 10.1021/bi971018y.

Abstract

SKC1, a 160-residue potassium channel with two putative transmembrane (TM) segments was recently identified from Streptomyces lividans. Its high levels of expression, small size, and ease of purification make SKC1 an ideal candidate for high-resolution structural studies. We have initiated the structural characterization of this channel by assessing its oligomeric behavior, stability in detergent, general hydrodynamic properties, and preliminary secondary structure content. SKC1 was readily expressed and purified to homogeneity by sequential metal-chelate and gel filtration chromatography. Standard SDS-PAGE, together with chemical cross-linking analysis indicated that SKC1 behaves as a tightly associated tetramer even in the presence of SDS. Using a gel shift assay to assess its oligomeric state, we determined that SKC1 is stable as a tetramer in most detergents and can be maintained in nonionic detergent solutions for extended periods of time. The tetramer is also stable at relatively high temperatures, with an oligomer-to-monomer transition occurring at approximately 65 degrees C. The Stokes radius of the micellar complex is 5 nm as determined from gel filtration chromatography of SKC1 in dodecyl maltoside. Preliminary estimations of secondary structure from CD spectroscopy showed that the channel exists mostly in alpha-helical conformation, with more than 50% alpha-helical, close to 20% beta-sheet, 10% beta-turn, and about 15% unassigned or random coil. These results are consistent with the idea that a bundle of alpha-helices forming a tetramer around the ion-conductive pathway is the common structural motif for members of the voltage-dependent channel superfamily.

摘要

SKC1是一种含有两个假定跨膜(TM)片段的由160个氨基酸残基组成的钾通道,最近从淡紫链霉菌中被鉴定出来。其高表达水平、小尺寸以及易于纯化的特点,使得SKC1成为高分辨率结构研究的理想候选对象。我们已经通过评估其寡聚行为、在去污剂中的稳定性、一般流体动力学性质以及初步的二级结构含量,启动了对该通道的结构表征研究。SKC1通过连续的金属螯合和凝胶过滤色谱法很容易地表达并纯化至均一状态。标准SDS-PAGE以及化学交联分析表明,即使在SDS存在的情况下,SKC1也表现为紧密结合的四聚体。使用凝胶迁移试验评估其寡聚状态,我们确定SKC1在大多数去污剂中作为四聚体是稳定的,并且可以在非离子去污剂溶液中长时间保持。该四聚体在相对较高的温度下也很稳定,在大约65摄氏度时会发生从寡聚体到单体的转变。通过对SKC1在十二烷基麦芽糖苷中的凝胶过滤色谱分析确定,胶束复合物的斯托克斯半径为5纳米。圆二色光谱对二级结构的初步估计表明,该通道主要以α-螺旋构象存在,α-螺旋含量超过50%,β-折叠接近20%,β-转角为10%,约15%未确定或为无规卷曲。这些结果与以下观点一致,即围绕离子传导途径形成四聚体的一束α-螺旋是电压依赖性通道超家族成员的常见结构基序。

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