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人α-凝血酶的构象完整性

Conformational integrity of human alpha-thrombin.

作者信息

Villanueva G B, Perret V, Fenton J W

出版信息

Thromb Res. 1984 Dec 1;36(5):377-87. doi: 10.1016/0049-3848(84)90294-9.

Abstract

It is known that storage at pH 6 stabilizes thrombin against inactivation. In order to determine whether structural changes accompany this stabilization, the conformation of human alpha-thrombin at pH 6.0 and 7.5 was investigated by chemical modification, difference spectroscopy, circular dichrosim, and thermal stability. It was shown that the CD spectra at the 230-200 nm peptide transition were indistinguishable at the two pH values, indicating no differences in the secondary structure as also indicated by the thermal stability of the enzyme at pH 6.0, 7.4 and 8.3. However, differences were observed in the 300-250 nm aromatic transition suggesting some changes in the microenvironment of the aromatic chromophores. Solvent perturbation in 20% ethylene glycol and 20% dimethylsulfoxide showed that at pH 7.5, 4.3 +/- 0.3 tryptophan and 8.6 +/- 0.4 tyrosine residues were exposed and accessible to the solvent whereas at pH 6.0 these values were 3.6 +/- 0.1 tryptophan and 7.8 +/- 0.4 tyrosine residues. At pH 7.5, 6.0 +/- 0.5 tryptophan residues were found reactive toward dimethyl-(2-hydroxy-5-nitrobenzyl)sulfonium bromide while 2.5 +/- 0.3 were found reactive at pH 6.0. Accompanying these structural changes were ultraviolet absorption and CD spectral changes with transition midpoints at pH 6.45 characteristic of histidine ionization. These spectral changes were lost when alpha-thrombin was modified by diethylpyrocarbonate but not by N-alpha-tosyl-L-Lysinechloro-methyl ketone. It is concluded that a second histidine residue, not the active site His-43, is associated with the pH dependent conformational changes at pH 6.0. The ionization of this histidine residue and the accompanying conformational changes could explain the reduced catalytic efficiency and stability of alpha-thrombin at pH 6.

摘要

已知在pH 6条件下储存可使凝血酶稳定,不易失活。为了确定这种稳定作用是否伴随着结构变化,通过化学修饰、差示光谱、圆二色光谱和热稳定性研究了pH 6.0和7.5条件下人α-凝血酶的构象。结果表明,在230 - 200 nm肽段跃迁处的圆二色光谱在这两个pH值下无法区分,这表明二级结构没有差异,酶在pH 6.0、7.4和8.3下的热稳定性也表明了这一点。然而,在300 - 250 nm芳香族跃迁处观察到了差异,这表明芳香族发色团的微环境发生了一些变化。在20%乙二醇和20%二甲基亚砜中的溶剂扰动表明,在pH 7.5时,有4.3±0.3个色氨酸残基和8.6±0.4个酪氨酸残基暴露于溶剂且可被溶剂接触,而在pH 6.0时,这些值分别为3.6±0.1个色氨酸残基和7.8±0.4个酪氨酸残基。在pH 7.5时,发现有6.0±0.5个色氨酸残基对二甲基-(2-羟基-5-硝基苄基)溴化锍有反应,而在pH 6.0时,有2.5±0.3个色氨酸残基有反应。伴随着这些结构变化的是紫外吸收和圆二色光谱变化,其跃迁中点在pH 6.45,这是组氨酸电离的特征。当α-凝血酶用焦碳酸二乙酯修饰时,这些光谱变化消失,但用N-α-甲苯磺酰-L-赖氨酸氯甲基酮修饰时则不会消失。得出的结论是,第二个组氨酸残基而非活性位点的His-43与pH 6.0时pH依赖性的构象变化有关。这个组氨酸残基的电离以及随之而来的构象变化可以解释α-凝血酶在pH 6时催化效率和稳定性降低的原因。

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