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组氨酸环质子的核磁共振滴定曲线。影响核糖核酸酶三个组氨酸残基的构象转变。

Nuclear magnetic resonance titration curves of histidine ring protons. Conformational transition affecting three of the histidine residues of ribonuclease.

作者信息

Cohen J S, Shindo H

出版信息

J Biol Chem. 1975 Nov 25;250(22):8874-81.

PMID:1237492
Abstract

NMR titration curves are reported for the 4 histidine residues of ribonuclease A in sodium acetate and for ribonuclease S in sodium acetate, phosphate, and sulfate solutions. Evidence is presented that the imidazole side chain of histidine residue 48 undergoes a conformational change, probably also involving the carboxyl side chain of aspartic acid residue 14. This group is considered to be responsible for the low pH inflection with pKa 4.2 present in the NMR titration curve of the C-2 proton resonance of histidine 48. The NMR titration curves of the active site histidine residues 12 and 119 also exhibit inflections at low pH values, although there is no carboxyl group within 9 A of the imidazole side chain of histidine residue 12 in the structure of ribonuclease S determined by x-ray crystallography (Wyckoff, H. W., Tsernoglou, D., Hanson, A. W. Knox, J. R., Lee, B., and Richards, F. M. (1970) J. Biol. Chem. 245, 305-328). Curve fitting was carried out on 11 sets of NMR titration data using a model in which the 3 histidine residues 12, 119, and 48 are assumed to be affected by a common carboxyl group. The results obtained indicate that such a model with fewer parameters gives as good a representation of the data as the model in which each histidine residue is assumed to interact separately with a different carboxyl group. Therefore, it is concluded that the ionization of aspartic acid residue 14 is indirectly experienced by the active site histidine residues through the conformational change at histidine 48. A model assuming mutual interaction of the active site histidine residues does not account for the low pH inflections in these curves.

摘要

报道了核糖核酸酶A的4个组氨酸残基在醋酸钠溶液中的核磁共振滴定曲线,以及核糖核酸酶S在醋酸钠、磷酸盐和硫酸盐溶液中的核磁共振滴定曲线。有证据表明,组氨酸残基48的咪唑侧链发生了构象变化,可能还涉及天冬氨酸残基14的羧基侧链。该基团被认为是导致组氨酸48的C-2质子共振的核磁共振滴定曲线中出现pKa为4.2的低pH拐点的原因。活性位点组氨酸残基12和119的核磁共振滴定曲线在低pH值时也出现拐点,尽管在通过X射线晶体学确定的核糖核酸酶S的结构中,组氨酸残基12的咪唑侧链9埃范围内没有羧基(Wyckoff, H. W., Tsernoglou, D., Hanson, A. W., Knox, J. R., Lee, B., and Richards, F. M. (1970) J. Biol. Chem. 245, 305 - 328)。使用一个模型对11组核磁共振滴定数据进行了曲线拟合,该模型假设组氨酸残基12、119和48受一个共同羧基的影响。所得结果表明,与假设每个组氨酸残基分别与不同羧基相互作用的模型相比,这种参数较少的模型对数据的拟合效果同样良好。因此,可以得出结论,活性位点组氨酸残基通过组氨酸48处的构象变化间接感受到天冬氨酸残基14的电离。假设活性位点组氨酸残基相互作用的模型无法解释这些曲线中的低pH拐点。

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