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Novel Antimicrobial Peptides from the Arctic Polychaeta Nicomache minor Provide New Molecular Insight into Biological Role of the BRICHOS Domain

机译:来自北极聚氯乙烯的新型抗菌肽核心次要患有新的分子洞察Brichos结构域的生物学作用

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摘要

Endogenous antimicrobial peptides (AMPs) are among the earliest molecular factors in the evolution of animal innate immunity. In this study, novel AMPs named nicomicins were identified in the small marine polychaeta Nicomache minor in the Maldanidae family. Full-length mRNA sequences encoded 239-residue prepropeptides consisting of a putative signal sequence region, the BRICHOS domain within an acidic proregion, and 33-residue mature cationic peptides. Nicomicin-1 was expressed in the bacterial system, and its spatial structure was analyzed by circular dichroism and nuclear magnetic resonance spectroscopy. Nicomicins are unique among polychaeta AMPs scaffolds, combining an amphipathic N-terminal α-helix and C-terminal extended part with a six-residue loop stabilized by a disulfide bridge. This structural arrangement resembles the Rana-box motif observed in the α-helical host-defense peptides isolated from frog skin. Nicomicin-1 exhibited strong in vitro antimicrobial activity against Gram-positive bacteria at submicromolar concentrations. The main mechanism of nicomicin-1 action is based on membrane damage but not on the inhibition of bacterial translation. The peptide possessed cytotoxicity against cancer and normal adherent cells as well as toward human erythrocytes.
机译:内源性抗微生物肽(AMP)是在动物的先天免疫的演变最早分子因素。在这项研究中,在Maldanidae家庭小型海洋多毛类Nicomache未成年人进行鉴定命名nicomicins新型抗菌肽。全长mRNA序列编码由推定的信号序列区域的239个残基的prepropeptides,酸性前区中的Brichos结构域和33个残基的成熟阳离子肽。 Nicomicin-1在细菌系统中表达,并通过圆二色性和核磁共振光谱法分析其空间结构。 Nicomicins是独特的多毛类抗菌肽的支架中,两亲性N-末端α螺旋和C末端延伸部分相结合的由二硫键稳定的六残基环。这种结构排列类似,从青蛙皮肤中分离出的α螺旋宿主防御肽观察到的林蛙-box基序。 Nicomicin-1显示出强的体外抗微生物活性在亚微摩尔浓度的革兰氏阳性菌。的nicomicin-1作用的主要机制是基于膜的损伤但不能在细菌翻译的抑制。所述肽具有针对癌症和正常的贴壁细胞的细胞毒性以及对人红细胞。

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