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倾斜、伸展并伺机而动:大肠杆菌素E1通道结构域中赖氨酸-381至丝氨酸-405残基的膜结合拓扑结构

Tilted, extended, and lying in wait: the membrane-bound topology of residues Lys-381-Ser-405 of the colicin E1 channel domain.

作者信息

Wei Zhikui, White Dawn, Wang Jie, Musse Abdiwahab A, Merrill A Rod

机构信息

Department of Molecular and Cellular Biology, University of Guelph, Guelph, ON, Canada N1G 2W1.

出版信息

Biochemistry. 2007 May 22;46(20):6074-85. doi: 10.1021/bi700317k. Epub 2007 Apr 25.

Abstract

The membrane-bound closed state (zero potential) of the helix 3 segment (Lys-381-Ser-405) of the colicin E1 channel domain was investigated by site-directed fluorescence labeling using a bimane probe tethered to a single cysteine residue of each mutant protein. A number of fluorescence properties of the tethered bimane probe were measured for the soluble channel mutant proteins as well as for the membrane-bound proteins. A new method called helical periodicity surface analysis was employed to fit the fluorescence data to a harmonic wave function using four different statistical methods. The fit of the various data sets to a harmonic wave function indicated that the periodicity of helix 3 in the membrane-bound state is typical for an amphipathic alpha helix (3.7-4.0 residues per turn and an angular frequency between 90 and 97 degrees). Notably, upon membrane binding, helix 3 elongates from 15 residues (soluble structure) to 20 residues by a three- and two-residue extension at the N- and C-termini of the helix, respectively. Dual quencher analysis also revealed that helix 3 is appressed to the surface of the membrane with its N-terminus more deeply buried within the interfacial region of the bilayer than its C-terminus. Finally, contrary to a previous report, our data show that helices 3 and 4 remain separate and independent helices upon membrane association in the absence of a membrane potential.

摘要

通过定点荧光标记法,利用连接到每个突变蛋白单个半胱氨酸残基上的双马来酰胺探针,研究了大肠杆菌素E1通道结构域螺旋3片段(Lys-381-Ser-405)的膜结合封闭状态(零电位)。对可溶性通道突变蛋白以及膜结合蛋白测量了连接的双马来酰胺探针的一些荧光特性。采用一种称为螺旋周期性表面分析的新方法,使用四种不同的统计方法将荧光数据拟合到谐波函数。各种数据集对谐波函数的拟合表明,膜结合状态下螺旋3的周期性是两亲性α螺旋的典型特征(每圈3.7-4.0个残基,角频率在90至97度之间)。值得注意的是,在膜结合时,螺旋3从15个残基(可溶性结构)延长至20个残基,分别在螺旋的N端和C端通过三个和两个残基的延伸。双淬灭剂分析还表明,螺旋3以其N端比C端更深地埋入双层界面区域的方式紧贴在膜表面。最后,与之前的报道相反,我们的数据表明,在没有膜电位的情况下,螺旋3和4在膜结合时保持分离且独立的螺旋状态。

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