Chen B L, Baase W A, Nicholson H, Schellman J A
Institute of Molecular Biology, University of Oregon, Eugene 97403-1229.
Biochemistry. 1992 Feb 11;31(5):1464-76. doi: 10.1021/bi00120a025.
The kinetics of unfolding and refolding of T4 lysozyme and nine of its mutants have been investigated as a function of guanidinium chloride concentration at 12 degrees C. All show simple two-state, first-order kinetics. Two types of mutants were studied: proline-alanine interchanges and substitutions at position 3 with side chains of varying hydrophobicity. Crystal structures are available for seven of the ten proteins. The effect of mutations on the folding kinetics is more pronounced and complex than on equilibrium thermodynamics. The proteins fall into two broad kinetic classes with one class rather close to the wild type. P86A is a mutant with marked changes in kinetics but only a very small change in stability. Since the 86 position is in the middle of an alpha-helix, the indications are that the helix containing an A residue is more stable in the transition state than one containing a P residue. The other mutants are more complicated, with the refolding and unfolding rates unequally affected by the mutations. On the basis of comparisons with other investigations, we conclude that the rate-determining step in the presence of guanidinium chloride is not the same as in aqueous solution and that it most likely precedes it. The indications are that we are studying the formation of a transition intermediate which is destabilized by the denaturant and which resembles the A intermediate of the framework or molten globule models for protein folding.
在12摄氏度下,研究了T4溶菌酶及其九个突变体的去折叠和重折叠动力学与氯化胍浓度的关系。所有突变体均呈现简单的两态一级动力学。研究了两种类型的突变体:脯氨酸 - 丙氨酸互换以及3号位上具有不同疏水性侧链的取代突变。十种蛋白质中有七种具有晶体结构。突变对折叠动力学的影响比对平衡热力学的影响更为显著和复杂。这些蛋白质分为两大类动力学类型,其中一类与野生型非常接近。P86A是一种动力学有显著变化但稳定性变化非常小的突变体。由于86号位位于α-螺旋的中间,这表明含有丙氨酸残基的螺旋在过渡态比含有脯氨酸残基的螺旋更稳定。其他突变体则更为复杂,重折叠和去折叠速率受到突变的影响程度不同。基于与其他研究的比较,我们得出结论,在氯化胍存在下的速率决定步骤与在水溶液中不同,并且很可能在其之前。这表明我们正在研究一种过渡中间体的形成,该中间体被变性剂破坏稳定,并且类似于蛋白质折叠的框架或熔球模型中的A中间体。