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首页> 外文期刊>Journal of Molecular Biology >DETERMINATION OF THE THREE-DIMENSIONAL SOLUTION STRUCTURE OF SCYLLATOXIN BY H-1 NUCLEAR MAGNETIC RESONANCE
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DETERMINATION OF THE THREE-DIMENSIONAL SOLUTION STRUCTURE OF SCYLLATOXIN BY H-1 NUCLEAR MAGNETIC RESONANCE

机译:H-1核磁共振法测定鞘氨醇的三维溶液结构

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The three-dimensional solution structure of Scyllatoxin (leiurotoxin I) a venom peptide from the scorpion Leiurus quinquestriatus hebraeus was determined at 1 Angstrom resolution by homonuclear proton n.m.r. methods at 500 MHz. Data analysis and structure calculation followed conventional protocols inherent to DIANA and related programs with two exceptions. First, distance constraints were obtained from two-dimensional nuclear Overhauser spectra by a previously described partial relaxation matrix approach. Second, since the pairing pattern of the six cysteine residues was not established a priori, the unequivocal assignment of the disulfide bridges was achieved exclusively from the n.m.r. data by a statistical analysis of preliminary DIANA structures. In the final calculation we used 227 upper distance constraints, 67 torsional constraints from vicinal coupling constants and ten stereospecific assignments of beta-methylene protons. Scyllatoxin folds into a compact ellipsoidal shape. An alpha-helix (defined with 0.24 Angstrom resolution) spanning 2.5 turns from Leu5 till Serl4 is stabilized by Cys8-Cys26 and Cys12-Cys28 disulfide bridges to the carboxy-terminal strand of an antiparallel beta-sheet. The antiparallel beta-sheet (defined at 0.66 Angstrom resolution) extends from Leu18 to Val29 with a tight turn at Gly23-Asp24 and displays a right-handed twist. Scyllatoxin competes with the toxins apamin from Apis mellifera mellifera and P05 from Androctonus mauretanicus mauretanicus for the same or similar high conductance calcium-activated potassium channels. Consideration of presently known biological activities and three-dimensional structures of these toxins suggest a different toxin-receptor interaction of scyllatoxin as compared to apamin and P05. (C) 1995 Academic Press Limited [References: 40]
机译:用同核质子n.m.r.以1埃的分辨率测定来自蝎蝎Leuurus quinquestriatus hebraeus的毒肽Syllatoxin(leiurotoxin I)的三维溶液结构。 500 MHz的方法。数据分析和结构计算遵循DIANA和相关程序固有的常规协议,但有两个例外。首先,通过先前描述的部分弛豫矩阵方法从二维核Overhauser谱获得距离约束。第二,由于没有先验地确定六个半胱氨酸残基的配对模式,因此仅从n.m.r获得二硫键的明确分配。通过初步DIANA结构的统计分析获得数据。在最终计算中,我们使用了227个上距离约束,来自邻位耦合常数的67个扭转约束和10个β-亚甲基质子的立体定向分配。希拉托辛折叠成紧凑的椭圆形。从Leu5到Serl4跨2.5匝的α-螺旋(定义为0.24埃)由Cys8-Cys26和Cys12-Cys28二硫键稳定到反平行β-折叠的羧基末端链。反平行的β-折叠片(定义为0.66埃的分辨率)从Leu18延伸到Val29,在Gly23-Asp24处急转,并显示出右旋。 Scyllatoxin与来自Apis mellifera mellifera的毒素apamin和来自Androctonus mauretanicus mauretanicus的P05竞争相同或相似的高电导钙激活钾通道。考虑到目前已知的这些毒素的生物学活性和三维结构,表明西拉西毒素与芹菜素和P05的毒素-受体相互作用不同。 (C)1995 Academic Press Limited [参考:40]

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