Department of Chemical and Geological Sciences, University of Cagliari, Monserrato (CA), Italy.
Department of Physics, University of Cagliari, Monserrato (CA), Italy.
Peptides. 2018 Jul;105:28-36. doi: 10.1016/j.peptides.2018.05.010. Epub 2018 May 22.
Antimicrobial peptides attracted increasing interest in last decades due to the rising concern of multi-drug resistant pathogens. Dendrimeric peptides are branched molecules with multiple copies of one peptide functional unit bound to the central core. Compared to linear analogues, they usually show improved activity and lower susceptibility to proteases. Knowledge of structure-function relationship is fundamental to tailor their properties. This work is focused on SB056, the smallest example of dendrimeric peptide, whose amino acid sequence is WKKIRVRLSA. Two copies are bound to the α- and ε- nitrogen of one lysine core. An 8-aminooctanamide was added at the C-terminus to improve membrane affinity. Its propensity for β-type structures is also interesting, since helical peptides were already thoroughly studied. Moreover, SB056 maintains activity at physiological osmolarity, a typical limitation of natural peptides. An optimized analogue with improved performance was designed, β-SB056, which differs only in the relative position of the first two residues (KWKIRVRLSA). This produced remarkable differences. Structure order and aggregation behavior were characterized by using complementary techniques and membrane models with different negative charge. Infrared spectroscopy showed different propensity for ordered β-sheets. Lipid monolayers' surface pressure was measured to estimate the area/peptide and the ability to perturb lipid packing. Fluorescence spectroscopy was applied to compare peptide insertion into the lipid bilayer. Such small change in primary structure produced fundamental differences in their aggregation behavior. A regular amphipathic peptide's primary structure was responsible for ordered β-sheets in a charge independent fashion, in contrast to unordered aggregates formed by the former analogue.
在过去几十年中,由于对多药耐药病原体的担忧日益增加,抗菌肽引起了越来越多的关注。树枝状肽是一种支化分子,其中多个相同的肽功能单元与中心核结合。与线性类似物相比,它们通常表现出更高的活性和更低的蛋白酶敏感性。了解结构-功能关系对于调整其性质至关重要。本工作集中研究了 SB056,这是树枝状肽的最小示例,其氨基酸序列为 WKKIRVRLSA。两个拷贝与赖氨酸核心的α-和ε-氮结合。在 C 末端添加了 8-氨基辛酰胺以提高膜亲和力。其β-型结构的倾向也很有趣,因为已经对螺旋肽进行了深入研究。此外,SB056 在生理渗透压下保持活性,这是天然肽的典型限制。设计了一种具有改进性能的优化类似物β-SB056,其仅在头两个残基的相对位置上有所不同(KWKIRVRLSA)。这产生了显著的差异。使用互补技术和具有不同负电荷的膜模型来表征结构有序性和聚集行为。红外光谱显示出不同的有序β-折叠倾向。测量脂质单层的表面压力以估计面积/肽和扰动脂质堆积的能力。荧光光谱用于比较肽插入脂质双层的情况。在一级结构中如此小的变化导致其聚集行为产生根本差异。规则的两亲肽的一级结构以电荷独立的方式负责形成有序的β-折叠,而前一种类似物形成无定形聚集体。