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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Structure and membrane interactions of chionodracine, a piscidin-like antimicrobial peptide from the icefish Chionodraco hamatus
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Structure and membrane interactions of chionodracine, a piscidin-like antimicrobial peptide from the icefish Chionodraco hamatus

机译:Chionodracine,一种来自冰鱼Chionodraco hamatus的类似piscidin的抗菌肽,其结构和膜相互作用

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Chionodracine (Cnd) is a 22-residue peptide of the piscidin family expressed in the gills of the Chionodraco hamatus as protection from bacterial infections. Here, we report the effects of synthetic Cnd on both Psychrobacter sp. TAD1 and Escherichia coli bacteria, as well as membrane models. We found that Cod perforates the inner and outer membranes of Psychrobacter sp. TAD1, making discrete pores that cause the cellular content to leak out. Membrane disruption studies using intrinsic and extrinsic fluorescence spectroscopy revealed that Cnd behaves similarly to other piscidins, with comparable membrane partition coefficients. Membrane accessibility assays and structural studies using NMR in detergent micelles show that Cnd adopts a canonical topology of antimicrobial helical peptides, with the hydrophobic face toward the lipid environment and the hydrophilic face toward the bulk solvent. The analysis of Cnd free energy of binding to vesicles with different lipid contents indicates a preference for charged phospholipids and a more marked binding to native E. coli extracts. Taken with previous studies on piscidin-like peptides, we conclude that Cnd first adsorbs to the membrane, and then forms pores together with membrane fragmentation. Since Cod has only marginal hemolytic activity, it constitutes a good template for developing new antimicrobial agents. (C) 2015 Elsevier B.V. All rights reserved.
机译:衣索拉德辛(Cnd)是在梭菌ha中表达的二十二肽家族的22个残基肽,可防止细菌感染。在这里,我们报告了合成Cnd对两种Psychrobacter sp。的影响。 TAD1和大肠杆菌细菌,以及膜模型。我们发现鳕鱼在Psychrobacter sp。的内膜和外膜上打孔。 TAD1,产生离散的孔,导致细胞内容物泄漏。使用内在和外在荧光光谱法进行的膜破坏研究表明,Cnd的行为与其他piscidins相似,但具有可比的膜分配系数。使用去污剂胶束中的NMR进行膜可及性分析和结构研究表明,Cnd采用抗菌螺旋肽的规范拓扑结构,疏水面朝向脂质环境,亲水面朝向本体溶剂。对与具有不同脂质含量的囊泡结合的Cnd自由能的分析表明,对带电荷的磷脂的偏爱和与天然大肠杆菌提取物的结合更明显。结合以前对类似肽类肽的研究,我们得出结论,Cnd首先吸附到膜上,然后与膜碎裂一起形成孔。由于鳕鱼仅具有少量的溶血活性,因此它是开发新的抗菌剂的良好模板。 (C)2015 Elsevier B.V.保留所有权利。

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