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黄蜂毒液马斯托帕兰 - B在含三氟乙醇的水溶液中的构象。

Conformation of Vespa basalis mastoparan-B in trifluoroethanol-containing aqueous solution.

作者信息

Chuang C C, Huang W C, Yu H M, Wang K T, Wu S H

机构信息

Department of Chemistry, National Taiwan Normal University, Taipei, R.O.C.

出版信息

Biochim Biophys Acta. 1996 Jan 4;1292(1):1-8. doi: 10.1016/0167-4838(95)00168-9.

Abstract

Mastoparan-B, a tetradecapeptide isolated from the venom of the hornet Vespa basalis, belongs to the mastoparan analogs of vespid venom with the lysine residues common for all mastoparan family toxins at positions 4, 11 and 12. Here we use 1H-NMR spectroscopy and hybrid distance geometry-simulated annealing calculation to investigate its three-dimensional structure in trifluoroethanol-containing aqueous solution. The calculated structure shows that residues 3-14 adopt an amphiphilic alpha-helical structure in which the residues with hydrophilic side chains (i.e. Lys-4, Ser-5, Ser-8, Lys-11, Lys-12) are located on one side and the residues with hydrophobic side chains (i.e. Leu-3, Ile-6, Trp-9, Ala-10, Val-13, Leu-14) located on the other side of the molecule. The overall structural features a very similar to the conformation of mastoparan-X reconstituted in vesicle [Wakamatsu et al. (1992) Biochemistry 31, 5654-5660] in spite of the substitutions made for eight residues with distinctly different hydrophobicity. These substitutions lead to a larger hydrophobic moment for the alpha-helical segment and further mobilized N-terminal. This study will help reveal the conformational significance of mastoparan toxins with respect to their potency and activity in G protein regulation.

摘要

马斯托帕兰 - B是从黄蜂黄脚胡蜂毒液中分离出的一种十四肽,属于胡蜂毒液的马斯托帕兰类似物,在第4、11和12位具有所有马斯托帕兰家族毒素共有的赖氨酸残基。在这里,我们使用1H - NMR光谱和混合距离几何 - 模拟退火计算来研究其在含三氟乙醇的水溶液中的三维结构。计算得到的结构表明,残基3 - 14采用两亲性α - 螺旋结构,其中具有亲水性侧链的残基(即赖氨酸 - 4、丝氨酸 - 5、丝氨酸 - 8、赖氨酸 - 11、赖氨酸 - 12)位于一侧,具有疏水性侧链的残基(即亮氨酸 - 3、异亮氨酸 - 6、色氨酸 - 9、丙氨酸 - 10、缬氨酸 - 13、亮氨酸 - 14)位于分子的另一侧。尽管八个具有明显不同疏水性的残基发生了取代,但整体结构特征与在囊泡中重构的马斯托帕兰 - X的构象非常相似[若松等人(1992年)《生物化学》31卷,5654 - 5660页]。这些取代导致α - 螺旋片段具有更大的疏水矩,并使N端进一步移动。这项研究将有助于揭示马斯托帕兰毒素在G蛋白调节中关于其效力和活性的构象意义。

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