Department of Micro- and Nanotechnology, Technical University of Denmark, Lyngby, Denmark.
Biophys J. 2011 Jul 6;101(1):100-9. doi: 10.1016/j.bpj.2011.05.047.
Antimicrobial peptides are known to interact strongly with negatively charged lipid membranes, initially by peripheral insertion of the peptide into the bilayer, which for some antimicrobial peptides will be followed by pore formation, and successive solubilization of the membranes resulting in mixed peptide-lipid micelles. We have investigated the mode of action of the antimicrobial peptide mastoparan-X using isothermal titration calorimetry (ITC) and cryo-transmission electron microscopy (cryo-TEM). The results show that mastoparan-X induces a range of structural transitions of POPC/POPG (3:1) lipid membranes at different peptide/lipid ratios. It has been established that ITC can be used as a fast method for localizing membrane transitions and when combined with DLS and cryo-TEM can elucidate structural changes, including the threshold for pore formation and micellation. Cryo-TEM was employed to confirm the structural changes associated with the thermodynamic transitions found by ITC. The pore-formation process has furthermore been investigated in detail and the thermodynamic parameters of pore formation have been characterized using a system-specific temperature where the enthalpy of peptide partitioning becomes zero (T(zero)). This allows for an exclusive study of the pore-formation process. The use of ITC to find T(zero) allows for characterization of the thermodynamic parameters of secondary processes on lipid membranes.
抗菌肽与带负电荷的脂质膜强烈相互作用,最初是通过将肽插入双层膜的外周来实现,对于一些抗菌肽,随后会形成孔,并且膜会连续溶解,导致混合肽-脂质胶束形成。我们使用等温热力学滴定法(ITC)和冷冻透射电子显微镜(cryo-TEM)研究了抗菌肽 mastoparan-X 的作用模式。结果表明,mastoparan-X 在不同的肽/脂质比下诱导 POPC/POPG(3:1)脂质膜的一系列结构转变。已经确定 ITC 可以用作定位膜转变的快速方法,并且当与 DLS 和 cryo-TEM 结合使用时,可以阐明结构变化,包括孔形成和胶束化的阈值。cryo-TEM 用于确认与 ITC 发现的热力学转变相关的结构变化。此外,还详细研究了成孔过程,并且使用肽分配焓变为零的系统特定温度(T(zero))来表征成孔的热力学参数。这允许对成孔过程进行专门研究。使用 ITC 找到 T(zero)可以用于表征脂质膜上二级过程的热力学参数。