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中国绒螯蟹(Eriocheir sinensis)β-防御素基因的克隆与表达分析。

β-Defensins from common goby (Pomatoschistus microps) and silver trevally (Pseudocaranx georgianus): Molecular characterization and phylogenetic analysis.

机构信息

Department of Marine Biology, Microbiology and Biochemistry, School of Marine Sciences, Cochin University of Science and Technology, Fine Arts Avenue, Kochi, Kerala, 682016, India.

出版信息

Mol Biol Rep. 2021 May;48(5):4943-4951. doi: 10.1007/s11033-021-06435-5. Epub 2021 Jun 1.

Abstract

Antimicrobial peptides (AMPs) are biologically active molecules involved in host defense present in a variety of organisms. They are an integral component of innate immunity, forming a front line of defense against potential pathogens, including antibiotic-resistant ones. Fishes are proven to be a prospective source of AMPs as they are constantly being challenged by a variety of pathogens and the AMPs are reported to play an inevitable role in fish immunity. Among them, β-defensins form one of the most studied multifunctional peptides with early evolutionary history and recently being considered as host defense peptides. The present study highlights the first-ever report on β-defensin AMP sequences from common goby (Pomatoschistus microps) and silver trevally (Pseudocaranx georgianus). A 192 bp cDNA fragment with an open reading frame encoding 63 amino acids (aa) comprising a 20 aa signal peptide region at the N-terminal was obtained from the mRNA of gill tissue of both P. microps and P. georgianus by RT-PCR. These peptide sequences when characterized in silico at the molecular level revealed a 43 aa cationic mature peptide with the signature intra-molecular disulphide bonded cysteine residue pattern ascertaining its β-defensin identity, further confirmed by phylogenetic analysis. The data collected will pave the way for further research on varied facets of the peptide-like, tissue level expressions, antimicrobial activities on commonly encountered pathogens, and its feasibility as a therapeutant in the aquaculture scenario.

摘要

抗菌肽(AMPs)是存在于多种生物体中的具有生物活性的分子,参与宿主防御。它们是先天免疫的一个组成部分,形成了抵御潜在病原体的第一道防线,包括抗生素耐药菌。鱼类被证明是 AMP 的有前途的来源,因为它们经常受到各种病原体的挑战,并且 AMP 被报道在鱼类免疫中发挥不可避免的作用。其中,β-防御素是研究最多的多功能肽之一,具有早期进化历史,最近被认为是宿主防御肽。本研究首次报道了来自普通虾虎鱼(Pomatoschistus microps)和银鲳(Pseudocaranx georgianus)的β-防御素 AMP 序列。通过 RT-PCR 从 P. microps 和 P. georgianus 的鳃组织 mRNA 中获得了一个 192 bp 的 cDNA 片段,其开放阅读框编码 63 个氨基酸(aa),包括 N 端的 20 个 aa 信号肽区域。这些肽序列在分子水平上进行计算机分析表明,它们是一种具有 43 个 aa 的阳离子成熟肽,具有特征性的分子内二硫键结合半胱氨酸残基模式,进一步通过系统发育分析得到证实。收集的数据将为进一步研究该肽样物质的各个方面铺平道路,包括组织水平的表达、对常见病原体的抗菌活性,以及在水产养殖场景中作为治疗剂的可行性。

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