Qin Meng, Zhang Jian, Wang Wei
National Laboratory of Solid State Microstructure and Department of Physics, Nanjing University, Nanjing 210093, China.
Biophys J. 2006 Jan 1;90(1):272-86. doi: 10.1529/biophysj.105.063552. Epub 2005 Oct 7.
Tendamistat, a small disulfide-bonded beta-sheet protein, and its three single/double-disulfide mutants are investigated by using a modified Gō-like model, aiming to understand the folding mechanism of disulfide-bonded protein as well as the effects of removal of disulfide bond on the folding process. Our simulations show that tendamistat and its two single-disulfide mutants are all two-state folders, consistent with the experimental observations. It is found that the disulfide bonds as well as three hydrogen bonds between the N-terminal loop-0 and strand-6 are of significant importance for the folding of tendamistat. Without these interactions, their two-state behaviors become unstable and the predictions of the model are inconsistent with experiments. In addition, the effect of disulfide bonds on the folding process are studied by comparing the wild-type tendamistat and its two mutants; it is found that the removal of either of the C11-C27 or C45-C73 disulfide bond leads to a large decrease in the thermodynamical stability and loss of structure in the unfolded state, and the effect of the former is stronger than that of the later. These simulation results are in good agreement with experiments and, thus, validate our model. Based on the same model, the detailed folding pathways of the wild-type tendamistat and two mutants are studied, and the effect of disulfide bonds on the folding kinetics are discussed. The obtained results provide a detailed folding picture of these proteins and complement experimental findings. Finally, the folding nuclei predicted to be existent in this protein tendamistat as well as its mutants are firstly identified in this work. The positions of the nucleus are consistent with those argued in experimental studies. Therefore, a nucleation/growth folding mechanism that can explain the two-state folding manner is clearly characterized. Moreover, the effect by the removal of each disulfide bond on the folding thermodynamics and dynamics can also be well interpreted from their influence on the folding nucleus. The implementation of this work indicates that the modified Gō-like model really describes the folding behavior of protein tendamistat and could be used to study the folding of other disulfide-bonded proteins.
田抗淀粉酶素是一种由二硫键连接的小型β折叠蛋白,利用一种改进的类Gō模型对其及其三个单/双二硫键突变体进行了研究,旨在了解二硫键连接蛋白的折叠机制以及去除二硫键对折叠过程的影响。我们的模拟结果表明,田抗淀粉酶素及其两个单二硫键突变体均为两态折叠体,这与实验观察结果一致。研究发现,二硫键以及N端环0与链6之间的三个氢键对田抗淀粉酶素的折叠至关重要。没有这些相互作用,它们的两态行为变得不稳定,模型预测与实验结果不一致。此外,通过比较野生型田抗淀粉酶素及其两个突变体,研究了二硫键对折叠过程的影响;发现去除C11-C27或C45-C73二硫键中的任何一个都会导致热力学稳定性大幅下降以及未折叠状态下结构的丧失,且前者的影响强于后者。这些模拟结果与实验结果高度吻合,从而验证了我们的模型。基于同一模型,研究了野生型田抗淀粉酶素和两个突变体的详细折叠途径,并讨论了二硫键对折叠动力学的影响。所得结果提供了这些蛋白质的详细折叠图景,并补充了实验发现。最后,本研究首次确定了预测存在于该蛋白田抗淀粉酶素及其突变体中的折叠核心。折叠核心的位置与实验研究中的观点一致。因此,明确了一种能够解释两态折叠方式的成核/生长折叠机制。此外,从它们对折叠核心的影响也可以很好地解释去除每个二硫键对折叠热力学和动力学的影响。这项工作的开展表明,改进的类Gō模型确实能够描述田抗淀粉酶素蛋白的折叠行为,并可用于研究其他二硫键连接蛋白的折叠。