Li Jianguo, Hu Zhongqiao, Beuerman Roger, Verma Chandra
Singapore Eye Research Institute , 11 Third Hospital Avenue, #06-00, Singapore 168751.
Bioinformatics Institute (A*-STAR) , 30 Biopolis Street, #07-01 Matrix, Singapore 138671.
J Phys Chem B. 2017 Apr 6;121(13):2739-2747. doi: 10.1021/acs.jpcb.7b00083. Epub 2017 Mar 27.
Human β-defensin 2 is a cysteine-rich antimicrobial peptide. In the crystal state, the N-terminal segment (residues 1-11) exhibits a helical conformation. However, a truncated form, with four amino acids removed from the N-terminus, adopts nonhelical conformations in solution, as shown by NMR. To explore the molecular origins of these different conformations, we performed Hamiltonian replica exchange molecular dynamics simulations of the peptide in solution and in the crystal state. It is found that backbone hydration and specific protein-protein interactions are key parameters that determine the peptide conformation. The helical conformation in the crystal state mainly arises from reduced hydration as well as a salt bridge between the peptide and a symmetry-related neighboring monomer in the crystal. When the extent of hydration is reduced and the salt bridge is reintroduced artificially, the peptide is successfully folded back to the helical conformation in solution. The findings not only shed light on the development of accurate force field parameters for protein molecules but also provide practical guidance in the design of functional proteins and peptides.
人β-防御素2是一种富含半胱氨酸的抗菌肽。在晶体状态下,N端片段(残基1 - 11)呈现螺旋构象。然而,一种从N端去除了四个氨基酸的截短形式,如核磁共振所示,在溶液中采取非螺旋构象。为了探究这些不同构象的分子起源,我们对该肽在溶液和晶体状态下进行了哈密顿量副本交换分子动力学模拟。研究发现,主链水合作用和特定的蛋白质-蛋白质相互作用是决定肽构象的关键参数。晶体状态下的螺旋构象主要源于水合作用的降低以及肽与晶体中对称相关的相邻单体之间的盐桥。当水合程度降低并人工重新引入盐桥时,该肽在溶液中成功折叠回螺旋构象。这些发现不仅为蛋白质分子精确力场参数的发展提供了启示,也为功能性蛋白质和肽的设计提供了实际指导。