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蛋白质中色氨酸的三重态。2. 溶菌酶中色氨酸残基62和108之间的差异。

Triplet state of tryptophan in proteins. 2. Differentiation between tryptophan residues 62 and 108 in lysozyme.

作者信息

Rousslang K W, Thomasson J M, Rose J B, Kwiram A L

出版信息

Biochemistry. 1979 May 29;18(11):2296-300. doi: 10.1021/bi00578a025.

Abstract

We have used optically detected magnetic resonance (ODMR) to characterize the degree of solvent availability of the tryptophan residues in lysozyme that are likely to be responsible for the observed phosphorescence. From the phosphorescence spectra, ODMR zero-field splittings (zfs), and ODMR line widths, we concur with the X-ray structure [Blake, C. C., Mair, G. A., North, A. C. T., Phillips, D. C., & Sarma, V. R. (1967) Proc. R. Soc. London, ser. B 167, 365-377] that Trp-62 behaves as an exposed residue and Trp-108 is buried. In addition, we present evidence that ODMR can be used in conjunction with conventional phosphorescence to evaluate the degree of order in the microenvironments of tryptophan in a protein containing several tryptophans. By the specific modification of residues Trp-62 and Trp-108, we have identified those portions of the ODMR lines in the native enzyme that are due to those specific residues. Barring major enzyme conformational changes in the vicinity of unmodified tryptophan residues when Trp-62 or Trp-108 are selectively modified, we find that Trp-108 dominates both the phosphorescence and the ODMR signals in native lysozyme. The results are discussed in view of previous fluorescence findings.

摘要

我们利用光探测磁共振(ODMR)来表征溶菌酶中色氨酸残基的溶剂可及程度,这些残基可能是观察到的磷光的来源。从磷光光谱、ODMR零场分裂(zfs)和ODMR线宽来看,我们认同X射线结构[布莱克,C.C.,迈尔,G.A.,诺思,A.C.T.,菲利普斯,D.C.,&萨尔马,V.R.(1967年)《伦敦皇家学会学报》,B辑167,365 - 377],即Trp - 62表现为一个暴露的残基,而Trp - 108是被掩埋的。此外,我们提供证据表明,ODMR可与传统磷光结合使用,以评估含有多个色氨酸的蛋白质中色氨酸微环境的有序程度。通过对残基Trp - 62和Trp - 108的特异性修饰,我们确定了天然酶中ODMR谱线中归因于这些特定残基的部分。当Trp - 62或Trp - 108被选择性修饰时,在未修饰的色氨酸残基附近不存在主要的酶构象变化的情况下,我们发现Trp - 108在天然溶菌酶的磷光和ODMR信号中均占主导。结合之前的荧光研究结果对这些结果进行了讨论。

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