Anderson W D, Fink A L, Perry L J, Wetzel R
Department of Chemistry, University of California, Santa Cruz 95064.
Biochemistry. 1990 Apr 3;29(13):3331-7. doi: 10.1021/bi00465a026.
Equilibrium and kinetic effects on the folding of T4 lysozyme were investigated by fluorescence emission spectroscopy in cryosolvent. To study the role of disulfide cross-links in stability and folding, a comparison was made with a mutant containing an engineered disulfide bond between Cys-3 (Ile-3 in the wild type) and Cys-97, which links the C-terminal domain to the N terminus of the protein [Perry & Wetzel (1984) Science 226, 555]. In our experimental system, stability toward thermal and denaturant unfolding was increased slightly as a result of the cross-link. The corresponding reduced protein was significantly less stable than the wild type. Unfolding and refolding kinetics were carried out in 35% methanol, pH 6.8 at -15 degrees C, with guanidine hydrochloride as the denaturant. Unfolding/refolding of the wild-type and reduced enzyme showed biphasic kinetics both within and outside the denaturant-induced transition region and were consistent with the presence of a populated intermediate in folding. Double-jump refolding experiments eliminated proline isomerization as a possible cause for the biphasicity. The disulfide mutant protein, however, showed monophasic kinetics in all guanidine concentrations studied.
通过冷冻溶剂中的荧光发射光谱研究了平衡和动力学对T4溶菌酶折叠的影响。为了研究二硫键交联在稳定性和折叠中的作用,将其与一种突变体进行了比较,该突变体在Cys-3(野生型中的Ile-3)和Cys-97之间含有一个工程化的二硫键,该二硫键将蛋白质的C末端结构域与N末端连接起来[Perry & Wetzel(1984年)《科学》226, 555]。在我们的实验系统中,由于交联作用,对热和变性剂展开的稳定性略有提高。相应的还原蛋白比野生型明显不稳定。在35%甲醇、pH 6.8、-15℃的条件下,以盐酸胍为变性剂进行展开和重折叠动力学实验。野生型和还原酶的展开/重折叠在变性剂诱导的转变区域内外均呈现双相动力学,这与折叠过程中存在一个大量存在的中间体一致。双跳跃重折叠实验排除了脯氨酸异构化作为双相性的可能原因。然而,二硫键突变蛋白在所有研究的胍浓度下均呈现单相动力学。