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中亚眼镜蛇(Naja naja oxiana)毒液中神经毒素II构象的质子核磁共振研究。

Proton-nuclear-magnetic-resonance study of the conformation of neurotoxin II from Middle-Asian cobra (Naja naja oxiana) venom.

作者信息

Arseniev A S, Balashova T A, Utkin Y N, Tsetlin V I, Bystrov V F, Ivanov V T, Ovchinnikov Y A

出版信息

Eur J Biochem. 1976 Dec 11;71(2):595-606. doi: 10.1111/j.1432-1033.1976.tb11150.x.

Abstract

A proton nuclear magnetic resonance (NMR) study at 100 and 300 MHz of neurotoxin II from the venom of Middle-Asian cobra Naja naja oxiana has been performed in 2H2O and H2O solutions. By means of chemical modification and double resonance all the aromatic residue resonances have been assigned. From the NMR titration curves, pK values of histidine 4 and histidine 31 residues have been determined. For one of the two neighbouring tryptophan residues pH dependence (in the 2-8-pH range) of the chemical shifts of indole protons has been revealed. According to the different sensitivity of the linewidth of indole NH resonances to pH in H2O solution, the accessibility of each of the tryptophan residues has been estimated. Temperature dependence has been observed for the linewidth of the aromatic resonances of the tyrosine 24 residue. Deuterium exchange rates have been measured for amide protons as well as for C(2)H histidine resonances. The NMR data obtained have allowed the conclusions to be made that the two histidine residues and one of the tryptophan residues should be localized on the surface of the protein globule, that arginine residues should be present in the environment of histidine 4, that histidine 31 and the buried tryptophan are possibly localized in close spatial proximity and that the side chain of tyrosine 24 is buried within the protein globule.

摘要

在2H2O和H2O溶液中,对中亚眼镜蛇(Naja naja oxiana)毒液中的神经毒素II进行了100兆赫和300兆赫的质子核磁共振(NMR)研究。通过化学修饰和双共振,已确定了所有芳香族残基的共振峰。根据NMR滴定曲线,测定了组氨酸4和组氨酸31残基的pK值。对于两个相邻色氨酸残基中的一个,已揭示了吲哚质子化学位移的pH依赖性(在2至8的pH范围内)。根据H2O溶液中吲哚NH共振峰线宽对pH的不同敏感性,估计了每个色氨酸残基的可及性。观察到酪氨酸24残基芳香族共振峰线宽的温度依赖性。已测量了酰胺质子以及C(2)H组氨酸共振峰的氘交换率。所获得的NMR数据得出以下结论:两个组氨酸残基和一个色氨酸残基应位于蛋白质球状体表面,组氨酸4周围应存在精氨酸残基,组氨酸31和埋藏的色氨酸可能在空间上紧密相邻,酪氨酸24的侧链埋藏在蛋白质球状体内。

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