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源自1H-NMR的蝎子以色列金蝎强效抗哺乳动物和抗昆虫毒素III的二级结构及整体折叠

1H-NMR-derived secondary structure and the overall fold of the potent anti-mammal and anti-insect toxin III from the scorpion Leiurus quinquestriatus quinquestriatus.

作者信息

Landon C, Cornet B, Bonmatin J M, Kopeyan C, Rochat H, Vovelle F, Ptak M

机构信息

Centre de Biophysique Móleculaire (CNRS), Orléans, France.

出版信息

Eur J Biochem. 1996 Mar 1;236(2):395-404. doi: 10.1111/j.1432-1033.1996.00395.x.

Abstract

We describe the secondary structure and the overall fold of toxin III from the venom of the scorpion Leiurus quinquestriatus quinquestriatus determined using two-dimensional-1H-NMR spectroscopy. This protein, which contains 64 amino acids and 4 disulfide bridges, belongs to the long-chain toxin category and is highly toxic to both mammals and insects. The overall fold was determined on the basis of 1208 inter-proton-distance restraints derived from NOE measurements and 90 psi, phi dihedral-angle restraints derived from NOE connectivities and 3JNH-alphaH coupling constants using the HABAS program. This fold, which mainly consists of an alpha-helix packed against a small antiparallel three-stranded beta-sheet, and of several turns and loops, is similar to that of other long-chain scorpion toxins. Aromatic and non-polar residues form several patches on the surface of the protein which alternate with patches of charged and polar residues. Such a topology should be important in the interactions of toxin III with sodium channels in membranes. Two weakly constrained loops introduce some flexibility to the structure which could be related to the activity of this toxin. The central core of toxin III is compared with the cysteine-stabilized alpha beta motif (an alpha-helix connected to a beta-sheet through two disulfide bridges) found in insect defensins and plant thionins. Defensins and thionins are small proteins (approximately 40--50 amino acid residues) containing three or four disulfide bridges, respectively. This comparison confirms that the cysteine-stabilized alpha beta motif is a common core to a number of small proteins from different origins and having different activities.

摘要

我们描述了通过二维¹H-NMR光谱法测定的来自蝎子以色列金蝎毒液中毒素III的二级结构和整体折叠情况。这种蛋白质含有64个氨基酸和4个二硫键,属于长链毒素类别,对哺乳动物和昆虫都具有高毒性。基于从NOE测量获得的1208个质子间距离限制以及从NOE连接性和³JNH-αH耦合常数获得的90个ψ、φ二面角限制,使用HABAS程序确定了整体折叠情况。这种折叠主要由一个α螺旋堆积在一个小的反平行三链β折叠片上,以及几个转角和环组成,与其他长链蝎子毒素的折叠情况相似。芳香族和非极性残基在蛋白质表面形成几个斑块,与带电和极性残基的斑块交替出现。这种拓扑结构在毒素III与膜中钠通道的相互作用中应该很重要。两个弱受限环给结构带来了一些灵活性,这可能与这种毒素的活性有关。将毒素III的中央核心与在昆虫防御素和植物硫堇中发现的半胱氨酸稳定的αβ基序(通过两个二硫键连接到β折叠片的α螺旋)进行了比较。防御素和硫堇是分别含有三个或四个二硫键的小蛋白质(约40 - 50个氨基酸残基)。这种比较证实了半胱氨酸稳定的αβ基序是许多来自不同来源且具有不同活性的小蛋白质的共同核心。

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