Donten Mateusz L, Hassan Shabir, Popp Alexander, Halter Jonathan, Hauser Karin, Hamm Peter
Department of Chemistry, Universität Zürich , Winterthurerstrasse 190, CH-8057 Zürich, Switzerland.
J Phys Chem B. 2015 Jan 29;119(4):1425-32. doi: 10.1021/jp511539c. Epub 2015 Jan 9.
The folding of a pH-sensitive leucine zipper, that is, a GCN4 mutant containing eight glutamic acid residues, has been investigated. A pH-jump induced by a caged proton (o-nitrobenzaldehyde, oNBA) is employed to initiate the process, and time-resolved IR spectroscopy of the amide I band is used to probe it. The experiment has been carefully designed to minimize the buffer capacity of the sample solution so that a large pH jump can be achieved, leading to a transition from a completely unfolded to a completely folded state with a single laser shot. In order to eliminate the otherwise rate-limiting diffusion-controlled step of the association of two peptides, they have been covalently linked. The results for the folding kinetics of the cross-linked peptide are compared with those of an unlinked peptide, which reveals a detailed picture of the folding mechanism. That is, folding occurs in two steps, one on an ∼1-2 μs time scale leading to a partially folded α-helix even in the monomeric case and a second one leading to the final coiled-coil structure on distinctively different time scales of ∼30 μs for the cross-linked peptide and ∼200 μs for the unlinked peptide. By varying the initial pH, it is found that the folding mechanism is consistent with a thermodynamic two-state model, despite the fact that a transient intermediate is observed in the kinetic experiment.
对一种pH敏感型亮氨酸拉链(即含有八个谷氨酸残基的GCN4突变体)的折叠过程进行了研究。利用由笼蔽质子(邻硝基苯甲醛,oNBA)诱导的pH跃变来启动该过程,并使用酰胺I带的时间分辨红外光谱对其进行探测。该实验经过精心设计,以尽量减少样品溶液的缓冲能力,从而实现较大的pH跃变,通过单次激光照射使肽段从完全未折叠状态转变为完全折叠状态。为了消除原本作为限速步骤的两个肽段缔合的扩散控制步骤,将它们共价连接。将交联肽的折叠动力学结果与未连接肽的结果进行比较,这揭示了折叠机制的详细情况。也就是说,折叠过程分两步进行,第一步在约1 - 2微秒的时间尺度上发生,即使在单体情况下也会形成部分折叠的α螺旋,第二步在明显不同的时间尺度上发生,交联肽约为30微秒,未连接肽约为200微秒,最终形成卷曲螺旋结构。通过改变初始pH值,发现尽管在动力学实验中观察到一个瞬态中间体,但折叠机制与热力学两态模型一致。