Jablonsky M J, Watt D D, Krishna N R
Department of Biochemistry and Molecular Genetics, University of Alabama at Birmingham 35294, USA.
J Mol Biol. 1995 Apr 28;248(2):449-58. doi: 10.1016/s0022-2836(95)80062-x.
We have determined the solution structure of an alpha-toxin, CsE-V, isolated from the venom of the New World scorpion Centruroides sculpturatus Ewing (CsE). This toxin causes spontaneous rhythmic contractions in muscle. Unlike other New World toxins from CsE, this protein exhibits amino acid insertions and deletions at locations similar to Old World toxins and may thus represent a transition protein between the New World and Old World scorpion alpha-toxins. Sequence-specific assignments were made using 600 MHz 1H two-dimensional NMR data. NOESY, PH-COSY and amide-exchange data were used to deduce constraints for molecular modeling calculations. Distance geometry and dynamical simulated annealing calculations were performed to generate a family of 70 structures free of constraint violations. With respect to this family of structures, the energy-minimized average structure had root-mean-square deviations of 0.74 and 1.32 A for backbone and all atoms, respectively (excluding the C-terminal dipeptide, which is disordered). As with other scorpion toxins, the secondary structure of CsE-V consists of an alpha-helix, a three-strand anti-parallel beta-sheet, four beta-turns, and a hydrophobic patch that includes tyrosine residues in herringbone configuration. Unlike the CsE-v3 and -v1 proteins from C. sculpturatus, all of the proline residues were found to be in the trans configuration. The alpha-helix is slightly longer in CsE-V. The overall structure is more similar to the Old World alpha-toxin AaH-II from Androctonus australis Hector (r.m.s.d 1.59 A for backbone atoms of matching residues) than to the New World alpha-toxin CsE-v3 (r.m.s.d. 1.91 A). These structural data on CsE-V add further to our knowledge of the conformational repertoire exhibited by these sodium channel-binding neurotoxins.
我们已经确定了从新大陆蝎子雕刻纹毒蝎(Centruroides sculpturatus Ewing,简称CsE)毒液中分离出的一种α-毒素CsE-V的溶液结构。这种毒素会引起肌肉的自发节律性收缩。与来自CsE的其他新大陆毒素不同,该蛋白质在与旧大陆毒素相似的位置表现出氨基酸插入和缺失,因此可能代表新大陆和旧大陆蝎子α-毒素之间的过渡蛋白。使用600 MHz 1H二维NMR数据进行了序列特异性归属。NOESY、PH-COSY和酰胺交换数据用于推导分子建模计算的约束条件。进行了距离几何和动态模拟退火计算,以生成70个无约束违反的结构家族。对于这个结构家族,能量最小化的平均结构的主链和所有原子的均方根偏差分别为0.74 Å和1.32 Å(不包括无序的C端二肽)。与其他蝎子毒素一样,CsE-V的二级结构由一个α-螺旋、一个三股反平行β-折叠、四个β-转角和一个包含呈人字形排列酪氨酸残基的疏水补丁组成。与雕刻纹毒蝎的CsE-v3和-v1蛋白不同,所有脯氨酸残基均处于反式构象。CsE-V中的α-螺旋略长。总体结构与来自澳大利亚杀人蝎(Androctonus australis Hector)的旧大陆α-毒素AaH-II(匹配残基的主链原子的均方根偏差为1.59 Å)比与新大陆α-毒素CsE-v3(均方根偏差为1.91 Å)更相似。这些关于CsE-V的结构数据进一步增加了我们对这些钠通道结合神经毒素所展现的构象库的了解。