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来自大西洋白虾(凡纳滨对虾)的一类新型抗菌肽(对虾抗菌肽4类)具有靶标特异性和独立的富含脯氨酸结构域功能。

A new class (penaeidin class 4) of antimicrobial peptides from the Atlantic white shrimp (Litopenaeus setiferus) exhibits target specificity and an independent proline-rich-domain function.

作者信息

Cuthbertson Brandon J, Büllesbach Erika E, Fievet Julie, Bachère Evelyne, Gross Paul S

机构信息

Marine Biomedicine and Environmental Sciences, Medical University of South Carolina, 221 Fort Johnson Road, Charleston, SC 29412, USA.

出版信息

Biochem J. 2004 Jul 1;381(Pt 1):79-86. doi: 10.1042/BJ20040330.

Abstract

A highly pure, chemically defined representative of a new class of antimicrobial peptide from the Atlantic white shrimp (Litopenaeus setiferus), penaeidin class 4 [Pen4-1 (penaeidin class 4 isoform 1)], was produced synthetically. Chemical synthesis was achieved by native ligation from two separate domains yielding a bioactive peptide that reflected the characteristics of native penaeidin. Synthetic Pen4-1 proved to be an effective antimicrobial peptide, particularly against the broad-spectrum pathogen Fusarium oxysporum, exhibiting a complex effect on reproductive growth at inhibitory concentrations resulting in the suppression of spore formation. Pen4-1 exhibits unique features [not previously observed for penaeidins from the Pacific white shrimp (L. vannamei)], including target-species specificity against Gram-positive bacteria, indicating a potential partitioning of antimicrobial function among this family of peptides. The proline-rich domain of penaeidin class 4 alone was an active antimicrobial peptide, having the same target range as the full-length Pen4-1. These findings indicate that the proline-rich domain of penaeidin is sufficient to confer target specificity and that divergence in this domain between classes can result in a gain in antimicrobial function as observed for the proline-rich domain of Pen4-1.

摘要

一种来自大西洋白虾(Litopenaeus setiferus)的新型抗菌肽——对虾抗菌肽4类[Pen4-1(对虾抗菌肽4亚型1)]的高度纯化、化学结构明确的代表性产物通过化学合成获得。化学合成是通过将两个独立结构域进行天然连接实现的,从而产生一种反映天然对虾抗菌肽特征的生物活性肽。合成的Pen4-1被证明是一种有效的抗菌肽,特别是对广谱病原体尖孢镰刀菌,在抑制浓度下对其生殖生长表现出复杂的影响,导致孢子形成受到抑制。Pen4-1具有独特的特征[此前在太平洋白虾(L. vannamei)的对虾抗菌肽中未观察到],包括对革兰氏阳性菌的靶物种特异性,这表明该肽家族中抗菌功能存在潜在的分化。仅对虾抗菌肽4类富含脯氨酸的结构域就是一种活性抗菌肽,其靶标范围与全长Pen4-1相同。这些发现表明,对虾抗菌肽富含脯氨酸的结构域足以赋予靶标特异性,并且如Pen4-1富含脯氨酸的结构域所观察到的,不同类别之间该结构域的差异可导致抗菌功能的增强。

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