首页> 外文期刊>Peptides: An International Journal >A novel antifungal peptide designed from the primary structure of a natural antimicrobial peptide purified from Argopecten purpuratus hemocytes.
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A novel antifungal peptide designed from the primary structure of a natural antimicrobial peptide purified from Argopecten purpuratus hemocytes.

机译:一种新颖的抗真菌肽,其设计是从紫花苜蓿血细胞中纯化的天然抗菌肽的一级结构设计的。

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摘要

We have isolated and purified a natural antimicrobial peptide from Argopecten purpuratus hemocytes. 47 residues were determined from its primary structure representing the N-terminal of the complete sequence. This peptide of 5100.78Da was chemically synthesized and named Ap. The peptide has 25% of hydrophobic amino acids with a net charge of +1, and partial homology with known active antimicrobial peptides. Based on that sequence, a new peptide was designed and modeled to increase hydrophobicity and cationicity. The designed 30-residue peptide was chemically synthesized resulting in a novel 38% hydrophobic molecule named peptide Ap-S, with a net charge of +5 and 3028Da. A secondary structure was shown by circular dichroism, thus exposing a hydrophobic epitope toward the N-terminus and a hydrophilic one toward the C-terminus, improving amphipathicity. Ap-S was much more active than the parental Ap. Ap-S up to 100microM has no cytotoxic effect against fish cell line CHSE-214. We demonstrated that the chemical modification of a natural peptide and the chemical synthesis of derived molecules may be a powerful tool for obtaining substitutes to conventional antibiotics, displaying the many advantages of antimicrobial peptides and overcoming the limitations of natural peptides for large-scale production and application, such as the low specific activity and the minute amounts recovered in vivo. This peptide may have a relevant application in aquaculture by controlling Saprolegna sp., a parasitic pathogen fungus that attacks the culture of fish in different stages of their growth, from egg to adult.
机译:我们从Argopecten purpuratus血细胞中分离并纯化了天然抗菌肽。从其代表完整序列N末端的一级结构确定了47个残基。化学合成了5100.78Da的这种肽,命名为Ap。该肽具有25%的疏水性氨基酸,其净电荷为+1,并且与已知的活性抗菌肽具有部分同源性。基于该序列,设计并建模了新的肽以增加疏水性和阳离子性。化学合成设计的30个残基的肽,得到一个新的38%疏水分子,称为肽Ap-S,净电荷为+5和3028Da。圆形二色性显示了二级结构,从而使疏水性表位向N末端暴露,而亲水性表位向C末端暴露,从而改善了两亲性。 Ap-S比父母Ap更活跃。高达100microM的Ap-S对鱼细胞系CHSE-214没有细胞毒性作用。我们证明了天然肽的化学修饰和衍生分子的化学合成可能是获得常规抗生素替代品的有力工具,显示出抗菌肽的许多优点,并克服了天然肽在大规模生产和应用中的局限性,例如低比活度和体内微量回收。该肽可通过控制Saprolegna sp。(一种在细菌从卵到成鱼的不同生长阶段攻击鱼类养殖的寄生性病原真菌)在水产养殖中的相关应用。

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