海洋硬骨鱼、水母速舌鱼和半鱼舌鱼组蛋白来源抗菌肽Teleostin的分子特征和系统发育分析。

ISRN molecular biology Pub Date : 2013-03-03 eCollection Date: 2013-01-01 DOI:10.1155/2013/185807
E R Chaithanya, Rosamma Philip, Naveen Sathyan, P R Anil Kumar
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引用次数: 17

摘要

抗菌肽(AMPs)是宿主防御肽,在整个进化过程中具有良好的保守性。组蛋白是经典的dna结合蛋白,富含阳离子氨基酸,最近被认为是各种组蛋白衍生的amp的前体。本研究从海洋硬骨鱼Cynoglossus semifasasciatus和Tachysurus jella的组蛋白H2A中鉴定了硬骨蛋白的潜在抗菌肽序列。从这些鱼的cDNA转录本中获得了一个245 bp的扩增子,编码81个氨基酸。该肽N端的前52个氨基酸与先前表征的组蛋白衍生的抗菌肽相同。该序列的分子和物理化学特征与先前报道的组蛋白H2A衍生的AMPs一致,提示组蛋白H2A可能在鱼类先天防御机制中发挥作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Molecular Characterization and Phylogenetic Analysis of a Histone-Derived Antimicrobial Peptide Teleostin from the Marine Teleost Fishes, Tachysurus jella and Cynoglossus semifasciatus.

Molecular Characterization and Phylogenetic Analysis of a Histone-Derived Antimicrobial Peptide Teleostin from the Marine Teleost Fishes, Tachysurus jella and Cynoglossus semifasciatus.

Molecular Characterization and Phylogenetic Analysis of a Histone-Derived Antimicrobial Peptide Teleostin from the Marine Teleost Fishes, Tachysurus jella and Cynoglossus semifasciatus.

Molecular Characterization and Phylogenetic Analysis of a Histone-Derived Antimicrobial Peptide Teleostin from the Marine Teleost Fishes, Tachysurus jella and Cynoglossus semifasciatus.

Antimicrobial peptides (AMPs) are host defense peptides that are well conserved throughout the course of evolution. Histones are classical DNA-binding proteins, rich in cationic amino acids, and recently appreciated as precursors for various histone-derived AMPs. The present study deals with identification of the potential antimicrobial peptide sequence of teleostin from the histone H2A of marine teleost fishes, Cynoglossus semifasciatus and Tachysurus jella. A 245 bp amplicon coding for 81 amino acids was obtained from the cDNA transcripts of these fishes. The first 52 amino acids from the N terminal of the peptide were identical to previously characterized histone-derived antimicrobial peptides. Molecular and physicochemical characterizations of the sequence were found to be in agreement with previously reported histone H2A-derived AMPs, suggesting the possible role of histone H2A in innate defense mechanism in fishes.

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