Itani N, Kuramitsu S, Ikeda K, Hamaguchi K
J Biochem. 1975 Oct;78(4):705-11. doi: 10.1093/oxfordjournals.jbchem.a130958.
The difference spectra of hen and turkey egg-white lysozymes [EC 3.2.1.17] produced by acidification were measured. The difference spectra of both lysozymes had peaks at 295 and 301 nm which are characteristic of tryptophyl residues. The pH dependence curves of the extinction differences (delta eplision) at 301 nm and 295 nm for hen lysozyme were identical with the corresponding curves for turkey lysozyme. The pH dependence of delta eplision at 301 nm was analyzed assuming that the extinction at 301 nm is due to Trp 108 only, which interacts with the catalytic carboxyls, Glu 35 and Asp 52. The macroscopic pK values of Glu 35 and Asp 52 in both lysozymes thus determined were 6.0 and 3.3, respectively. These values were in excellent agreement with those determined by measuring the pH dependence of the circular dichroic band at 305 nm (Kuramitsu et al. (1974) J. Biochem, 76, 671-683; (1975) ibid. 77, 291-301). The pH dependence of delta eplision at 295 nm could not be completely explained in terms of the electrostatic effects of the catalytic groups on Trp 108.
测定了酸化产生的母鸡和火鸡蛋清溶菌酶[EC 3.2.1.17]的差光谱。两种溶菌酶的差光谱在295和301nm处有峰值,这是色氨酸残基的特征。母鸡溶菌酶在301nm和295nm处的消光差异(δε)的pH依赖性曲线与火鸡溶菌酶的相应曲线相同。假设301nm处的消光仅归因于与催化羧基Glu 35和Asp 52相互作用的Trp 108,分析了301nm处δε的pH依赖性。由此确定的两种溶菌酶中Glu 35和Asp 52的宏观pK值分别为6.0和3.3。这些值与通过测量305nm处圆二色带的pH依赖性所确定的值非常一致(仓光等人(1974年)《生物化学杂志》,76,671 - 683;(1975年)同上,77,291 - 301)。295nm处δε的pH依赖性不能完全用催化基团对Trp 108的静电效应来解释。