首页> 外文期刊>Biochimica et biophysica acta: international journal of biochemistry and biophysics >Interaction of antimicrobial peptides with biological and model membranes: structural and charge requirements for activity.
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Interaction of antimicrobial peptides with biological and model membranes: structural and charge requirements for activity.

机译:抗菌肽与生物膜和模型膜的相互作用:活性的结构和电荷要求。

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摘要

Species right across the evolutionary scale from insects to mammals use peptides as part of their host-defense system to counter microbial infection. The primary structures of a large number of these host-defense peptides have been determined. While there is no primary structure homology, the peptides are characterized by a preponderance of cationic and hydrophobic amino acids. The secondary structures of many of the host-defense peptides have been determined by a variety of techniques. The acyclic peptides tend to adopt helical conformation, especially in media of low dielectric constant, whereas peptides with more than one disulfide bridge adopt beta-structures. Detailed investigations have indicated that a majority of these host-defense peptides exert their action by permeabilizing microbial membranes. In this review, we discuss structural and charge requirements for the interaction of endogenous antimicrobial peptides and short peptides that have been derived from them, with membranes.
机译:从昆虫到哺乳动物,整个进化过程中的物种都使用肽作为宿主防御系统的一部分来抵抗微生物感染。已经确定了大量这些宿主防御肽的一级结构。虽然没有一级结构同源性,但是肽的特征是大量的阳离子和疏水氨基酸。许多宿主防御肽的二级结构已通过多种技术确定。无环肽倾向于采用螺旋构象,尤其是在介电常数低的介质中,而具有多于一个二硫键的肽则采用β结构。详细的研究表明,这些宿主防御肽中的大多数通过透化微生物膜发挥其作用。在这篇综述中,我们讨论了内源性抗菌肽和衍生自它们的短肽与膜相互作用的结构和电荷要求。

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