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噬菌体λ与其细胞表面受体的相互作用:病毒尾蛋白gpJ与LamB(麦芽糖孔蛋白)结合的体外研究

Interaction of bacteriophage lambda with its cell surface receptor: an in vitro study of binding of the viral tail protein gpJ to LamB (Maltoporin).

作者信息

Berkane Emir, Orlik Frank, Stegmeier Johannes F, Charbit Alain, Winterhalter Mathias, Benz Roland

机构信息

Lehrstuhl für Biotechnologie, Biocenter of the University of Würzburg, Am Hubland, D-97074 Würzburg, Federal Republic of Germany.

出版信息

Biochemistry. 2006 Feb 28;45(8):2708-20. doi: 10.1021/bi051800v.

Abstract

The cell surface receptor for bacteriophage Lambda is LamB (maltoporin). Responsible for phage binding to LamB is the C-terminal part, gpJ, of phage tail protein J. To study the interaction between LamB and gpJ, a chimera protein composed of maltose binding protein (MBP or MalE) connected to the C-terminal part of J (gpJ, amino acids 684-1131) of phage tail protein J of bacteriophage Lambda was expressed in Escherichia coli and purified to homogeneity. The interaction of the MBP-gpJ chimera protein with reconstituted LamB and its mutants LamB Y118G and the loop deletion mutant LamB Delta4+Delta6+Delta9v was studied using planar lipid bilayer membranes on a single-channel and multichannel level. Titration with the MBP-gpJ chimera blocked completely the ion current through reconstituted LamB when it was added to the cis side, the extracellular side of LamB with a half-saturation constant of approximately 6 nM in 1 M KCl. Control experiments with LamB Delta4+Delta6+Delta9v from which all major external loops had been removed showed similar blocking, whereas MBP alone caused no visible effect. Direct conductance measurement with His(6)-gpJ that contained a hexahistidyl tag (His(6) tag) at the N-terminal end of the protein for easy purification revealed no blocking of the ion current, requiring other measurements for the binding constant. However, when maltoporin was preincubated with His-gpJ, MBP-gpJ could not block the channel, which indicated that also His(6)-gpJ bound to the channel. High-molecular mass bands on SDS-PAGE and Western blots, confirming the planar lipid bilayer experiment results, also demonstrated stable complex formation between His(6)-gpJ and LamB or LamB mutants. The results revealed that phage Lambda binding includes not only the extracellular loops.

摘要

噬菌体λ的细胞表面受体是LamB(麦芽糖孔蛋白)。噬菌体尾蛋白J的C末端部分gpJ负责噬菌体与LamB的结合。为了研究LamB与gpJ之间的相互作用,一种由麦芽糖结合蛋白(MBP或MalE)与噬菌体λ尾蛋白J的J的C末端部分(gpJ,氨基酸684 - 1131)连接而成的嵌合蛋白在大肠杆菌中表达并纯化至同质。使用平面脂质双层膜在单通道和多通道水平上研究了MBP-gpJ嵌合蛋白与重组LamB及其突变体LamB Y118G和环缺失突变体LamB Delta4 + Delta6 + Delta9v的相互作用。当将MBP-gpJ嵌合蛋白添加到顺式侧(LamB的细胞外侧)时,用其滴定可完全阻断通过重组LamB的离子电流,在1 M KCl中其半饱和常数约为6 nM。对去除了所有主要外部环的LamB Delta4 + Delta6 + Delta9v进行的对照实验显示出类似的阻断作用,而单独的MBP没有可见效果。对在蛋白质N末端含有六组氨酸标签(His(6)标签)以便于纯化的His(6)-gpJ进行的直接电导测量显示离子电流没有被阻断,需要进行其他测量来确定结合常数。然而,当麦芽糖孔蛋白与His-gpJ预孵育时,MBP-gpJ不能阻断通道,这表明His(6)-gpJ也与通道结合。SDS-PAGE和蛋白质印迹上的高分子质量条带证实了平面脂质双层实验结果,也证明了His(6)-gpJ与LamB或LamB突变体之间形成了稳定的复合物。结果表明噬菌体λ的结合不仅涉及细胞外环。

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