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胍变性过程中肌酸激酶的构象变化

Conformational changes of creatine kinase during guanidine denaturation.

作者信息

Yao Q Z, Hou L X, Zhou H M, Zou C G

出版信息

Sci Sin B. 1982 Nov;25(11):1186-93.

PMID:7167804
Abstract

The conformational changes of creatine kinase during denaturation by different concentrations of guanidine hydrochloride have been studied by fluorescence and ultraviolet difference spectroscopic methods. At low concentrations of guanidine, less than 1 M, the denatured minus native difference spectra showed two negative peaks at 281 and 287 nm, whereas the fluorescence emission increased markedly with its maximum red-shifted from 337 to 345 nm. Control experiments showed that guanidine also increased the emission of ionized tyrosine at 345 nm. With the increase of concentrations of guanidine, both negative peaks at 281 and 287 nm increased in magnitude to reach maximal values at 3 M guanidine and at this time a small peak appeared at 292 nm. The fluorescence maximum was further red-shifted to 355 nm, whereas the emission intensity of the main peak decreased and a small shoulder appeared at 310 nm when the guanidine concentration increased from 1 to 3 M. Further increase in guanidine concentration produced little further change either in UV absorption or in fluorescence. From the above results, it seems that, in the native enzyme. Trp residues are partly buried and partly exposed and some of the Tyr residues are in ionized state. Guanidine below 1 M does not expose the buried Trp residues nor affects significantly the microenvironments of the ionized Tyr residues. At 3 M guanidine, Trp residues are exposed and the ionization state of Tyr residues is also affected. At this concentration, the peptide chain seems to be fully unfolded as evidenced by the fact that 5 M guanidine produces little further change in both UV absorption and fluorescence.

摘要

采用荧光光谱法和紫外差示光谱法研究了不同浓度盐酸胍变性过程中肌酸激酶的构象变化。在低浓度盐酸胍(小于1 M)时,变性态减去天然态的差示光谱在281和287 nm处出现两个负峰,而荧光发射显著增加,其最大值从337 nm红移至345 nm。对照实验表明,盐酸胍也会增加345 nm处离子化酪氨酸的发射。随着盐酸胍浓度的增加,281和287 nm处的两个负峰幅度增大,在3 M盐酸胍时达到最大值,此时在292 nm处出现一个小峰。当盐酸胍浓度从1 M增加到3 M时,荧光最大值进一步红移至355 nm,而主峰发射强度降低,在310 nm处出现一个小肩峰。盐酸胍浓度进一步增加时,紫外吸收或荧光几乎没有进一步变化。根据上述结果,在天然酶中,色氨酸残基部分被掩埋,部分暴露,一些酪氨酸残基处于离子化状态。低于1 M的盐酸胍不会暴露被掩埋的色氨酸残基,也不会显著影响离子化酪氨酸残基的微环境。在3 M盐酸胍时,色氨酸残基被暴露,酪氨酸残基的电离状态也受到影响。在此浓度下,肽链似乎已完全展开,这一点从5 M盐酸胍在紫外吸收和荧光方面几乎没有进一步变化可以证明。

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