Institute of Structural Chemistry, Chemical Research Center of the Hungarian Academy of Sciences, 59-67 Pusztaszeri út, 1025 Budapest, Hungary.
Eur Biophys J. 2011 Apr;40(4):447-62. doi: 10.1007/s00249-010-0657-0. Epub 2011 Jan 14.
Maximin-4 is a 27-residue cationic antimicrobial peptide exhibiting selectivity for bacterial cells. As part of the innate defense system in the Chinese red-belly toad, its mode of action is thought to be ion channel or pore formation and dissipation of the electrochemical gradient across the pathogenic cell membrane. Here we present the high-resolution structure of maximin-4 in two different membrane mimetics, sodium dodecyl sulfate micelles and 50% methanol, as determined by (1)H solution NMR spectroscopy. In both environments, the peptide chain adopts a helix-break-helix conformation following a highly disordered N-terminal segment. Despite the similarities in the overall topology of the two structures, major differences are observed in terms of the interactions stabilizing the kink region and the arrangement of the four lysine residues. This has a marked influence on the shape and charge distribution of the molecule and may have implications for the bacterial selectivity of the peptide. The solution NMR results are complemented by CD spectroscopy and solid-state NMR experiments in lipid bilayers, both confirming the predominantly helical conformation of the peptide. As a first step in elucidating the membrane interactions of maximin-4, our study contributes to a better understanding of the mode of action of antimicrobial peptides and the factors governing their selectivity.
Maximin-4 是一种 27 个残基的阳离子抗菌肽,对细菌细胞具有选择性。作为中国红腹蟾蜍先天防御系统的一部分,其作用模式被认为是离子通道或孔形成以及破坏致病细胞膜的电化学梯度。在这里,我们通过 (1)H 溶液 NMR 光谱法分别在两种不同的膜类似物(十二烷基硫酸钠胶束和 50%甲醇)中呈现了 maximin-4 的高分辨率结构。在这两种环境中,肽链在高度无序的 N 端片段之后采用螺旋-断裂-螺旋构象。尽管两种结构的整体拓扑结构相似,但在稳定拐点区域的相互作用和四个赖氨酸残基的排列方面观察到主要差异。这对分子的形状和电荷分布有显著影响,并可能对肽的细菌选择性产生影响。溶液 NMR 结果通过 CD 光谱和脂质双层中的固态 NMR 实验得到补充,这两者都证实了该肽的主要螺旋构象。作为阐明 maximin-4 与膜相互作用的第一步,我们的研究有助于更好地理解抗菌肽的作用模式以及决定其选择性的因素。