Langham Allison A, Waring Alan J, Kaznessis Y N
Department of Chemical Engineering and Materials Science, Minneapolis, MN 55455, USA.
BMC Biochem. 2007 Jul 16;8:11. doi: 10.1186/1471-2091-8-11.
We applied a combined experimental and computational approach to ascertain how peptides interact with host and microbial membrane surrogates, in order to validate simulation methodology we hope will enable the development of insights applicable to the design of novel antimicrobial peptides. We studied the interactions of two truncated versions of the potent, but cytotoxic, antimicrobial octadecapeptide protegrin-1, PC-72 [LCYCRRRFCVC] and PC-73 [CYCRRRFCVC].
We used a combination of FTIR, fluorescence spectroscopy and molecular dynamics simulations to examine the peptides' interactions with sodium dodecylsulfate (SDS) and dodecylphosphocholine (DPC) micelles. The relative amounts of secondary structure determined by FTIR agreed with those from the simulations. Fluorescence spectroscopy, deuterium exchange experiments and the simulations all indicate that neither peptide embeds itself deeply into the micelle core. Although molecular simulations placed both peptides at the micelle-water interface, further examination revealed differences in how certain residues interacted with the micelle core.
We demonstrate here the accuracy of molecular dynamics simulations methods through comparison with experiments, and have used the simulation results to enhance the understanding of how these two peptides interact with the two types of micelles. We find agreement between simulation and experimental results in the final structure of the peptides and in the peptides final conformation with respect to the micelle. Looking in depth at the peptide interactions, we find differences in the interactions between the two peptides from the simulation data; Leu-1 on PC-72 interacts strongly with the SDS micelle, though the interaction is not persistent--the residue withdraws and inserts into the micelle throughout the simulation.
我们采用实验与计算相结合的方法来确定肽如何与宿主及微生物膜替代物相互作用,以验证模拟方法,我们希望该方法能够促进形成适用于新型抗菌肽设计的见解。我们研究了强效但具有细胞毒性的抗菌十八肽protegrin-1的两种截短形式PC-72 [LCYCRRRFCVC]和PC-73 [CYCRRRFCVC]的相互作用。
我们结合傅里叶变换红外光谱(FTIR)、荧光光谱和分子动力学模拟来研究这些肽与十二烷基硫酸钠(SDS)和十二烷基磷酸胆碱(DPC)胶束的相互作用。FTIR测定的二级结构相对含量与模拟结果一致。荧光光谱、氘交换实验和模拟均表明,这两种肽都没有深入嵌入胶束核心。虽然分子模拟将两种肽都置于胶束 - 水界面,但进一步研究发现某些残基与胶束核心相互作用的方式存在差异。
我们通过与实验比较证明了分子动力学模拟方法的准确性,并利用模拟结果加深了对这两种肽如何与两种类型胶束相互作用的理解。我们发现模拟和实验结果在肽的最终结构以及肽相对于胶束的最终构象方面是一致的。深入研究肽的相互作用时,可以从模拟数据中发现两种肽相互作用的差异;PC-72上的Leu-1与SDS胶束强烈相互作用,不过这种相互作用并不持久——在整个模拟过程中,该残基会从胶束中撤出并重新插入。