首页> 外文期刊>Journal of Molecular Biology >Crystal structures of two alpha-like scorpion toxins: non-proline cis peptide bonds and implications for new binding site selectivity on the sodium channel.
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Crystal structures of two alpha-like scorpion toxins: non-proline cis peptide bonds and implications for new binding site selectivity on the sodium channel.

机译:两种α样蝎毒的晶体结构:非脯氨酸顺式肽键和对钠通道上新的结合位点选择性的影响。

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摘要

The crystal structures of two group III alpha-like toxins from the scorpion Buthus martensii Karsch, BmK M1 and BmK M4, were determined at 1.7 A and 1.3 A resolution and refined to R factors of 0.169 and 0.166, respectively. The first high-resolution structures of the alpha-like scorpion toxin show some striking features compared with structures of the "classical" alpha-toxin. Firstly, a non-proline cis peptide bond between residues 9 and 10 unusually occurs in the five-member reverse turn 8-12. Secondly, the cis peptide 9-10 mediates the spatial relationship between the turn 8-12 and the C-terminal stretch 58-64 through a pair of main-chain hydrogen bonds between residues 10 and 64 to form a unique tertiary arrangement which features the special orientation of the terminal residues 62-64. Finally, in consequence of the peculiar orientation of the C-terminal residues, the functional groups of Arg58, which are crucial for the toxin-receptor interaction, are exposed and accessible in BmK M1 and M4 rather than buried as in the classical alpha-toxins. Sequence alignment and characteristics analysis suggested that the above structural features observed in BmK M1 and M4 occur in all group III alpha-like toxins. Recently, some group III alpha-like toxins were demonstrated to occupy a receptor site different from the classical alpha-toxin. Therefore, the distinct structural features of BmK M1 and M4 presented here may provide the structural basis for the newly recognized toxin-receptor binding site selectivity. Besides, the non-proline cis peptide bonds found in these two structures play a role in the formation of the structural characteristics and in keeping accurate positions of the functionally crucial residues. This manifested a way to achieve high levels of molecular specificity and atomic precision through the strained backbone geometry. Copyright 1999 Academic Press.
机译:确定了蝎子马氏杆菌Karsch的两种III类α样毒素BmK M1和BmK M4的晶体结构,分别以1.7 A和1.3 A的分辨率测定,并分别精制为0.169和0.166的R因子。与“经典”α毒素的结构相比,α状蝎子毒素的第一个高分辨率结构显示出一些惊人的特征。首先,残基9和10之间的非脯氨酸顺式肽键在五元反向转折8-12中异常地发生。其次,顺式肽9-10通过残基10和64之间的一对主链氢键介导转折8-12和C末端延伸58-64之间的空间关系,形成独特的三级结构,末端残基62-64的特殊取向。最后,由于C末端残基的特殊取向,对毒素-受体相互作用至关重要的Arg58官能团在BmK M1和M4中暴露并可以访问,而不是像传统的α-毒素那样被掩埋。序列比对和特性分析表明,在BmK M1和M4中观察到的上述结构特征出现在所有III类α样毒素中。近来,一些III族α样毒素被证明占据不同于经典α毒素的受体位点。因此,此处介绍的BmK M1和M4的独特结构特征可能为新近识别的毒素-受体结合位点选择性提供结构基础。此外,在这两个结构中发现的非脯氨酸顺式肽键在结构特征的形成和保持功能关键残基的精确位置中起作用。这显示了通过应变的骨架几何结构实现高水平的分子特异性和原子精度的方法。版权所有1999,学术出版社。

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