Zhan Yingqian Ada, Ytreberg F Marty
Institute for Bioinformatics and Evolutionary Studies, University of Idaho, Moscow, ID, United States.
Institute for Bioinformatics and Evolutionary Studies, University of Idaho, Moscow, ID, United States; Department of Physics, University of Idaho, Moscow, ID, United States.
Arch Biochem Biophys. 2015 Jun 1;575:22-9. doi: 10.1016/j.abb.2015.03.021. Epub 2015 Apr 1.
The cis and trans conformations of the Xaa-Pro (Xaa: any amino acid) peptide bond are thermodynamically stable while other peptide bonds strongly prefer trans. The effect of proline cis-trans isomerization on protein binding has not been thoroughly investigated. In this study, computer simulations were used to calculate the absolute binding affinity for a p53 peptide (residues 17-29) to MDM2 for both cis and trans isomers of the p53 proline in position 27. Results show that the cis isomer of p53(17-29) binds more weakly to MDM2 than the trans isomer, and that this is primarily due to the difference in the free energy cost associated with the loss of conformational entropy of p53(17-29) when it binds to MDM2. The population of cis p53(17-29) was estimated to be 0.8% of the total population in the bound state. The stronger binding of trans p53(17-29) to MDM2 compared to cis may leave a minimal level of p53 available to respond to cellular stress. This study demonstrates that it is feasible to estimate the absolute binding affinity for an intrinsically disordered protein fragment binding to an ordered protein that are in good agreement with experimental results.
Xaa-Pro(Xaa为任意氨基酸)肽键的顺式和反式构象在热力学上是稳定的,而其他肽键则强烈倾向于反式。脯氨酸顺反异构化对蛋白质结合的影响尚未得到充分研究。在本研究中,通过计算机模拟计算了p53肽(第17 - 29位残基)中第27位脯氨酸的顺式和反式异构体与MDM2的绝对结合亲和力。结果表明,p53(17 - 29)的顺式异构体与MDM2的结合比反式异构体弱,这主要是由于p53(17 - 29)与MDM2结合时构象熵损失所伴随的自由能成本差异。在结合状态下,顺式p53(17 - 29)的比例估计占总群体的0.8%。与顺式相比,反式p53(17 - 29)与MDM2的更强结合可能使可用于响应细胞应激的p53水平降至最低。本研究表明,估计内在无序蛋白片段与有序蛋白的绝对结合亲和力并使其与实验结果高度一致是可行的。