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Identification of a novel class B scavenger receptor homologue in Portunus trituberculatus: Molecular cloning and microbial ligand binding

机译:三疣梭子蟹中新的B类清道夫受体同源物的鉴定:分子克隆和微生物配体结合。

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Class B scavenger receptors (SRBs), which are present in mammals and insects, have been implicated in a wide range of functions. Herein, a novel SRB homologue, PtSRB, was cloned from the swimming crab, Portunus trituberculatus. PtSRB has 538 amino acid residues, and it consists of two transmembrane regions, a large extracellular loop, and two intracellular tails. A phylogenetic analysis showed that PtSRB distinctly clustered with Marsupenaeus japonicas SRB-1 and most Drosophila SRB homologues, including Croquemort, Peste, NinaD, and Santa Maria, but was separate from the Drosophila sensory neuron membrane protein, MjSRB-2, and all vertebrate SRBs. Real-time quantitative PCR analyses showed that the PtSRB gene was constitutively expressed in all tissues tested. When PtSRB was overexpressed in human embryonic kidney 293T cells, it was distributed in the membrane and cytoplasm. Moreover, in vitro assays showed that rPtSRB bound microbial lipopolysaccharide with low affinity, and lipoteichoic acid and peptidoglycan with high affinity. PtSRB transcripts were down-regulated after challenge with Vibrio alginolyticus or white spot syndrome virus, but not after a Candida lusitaniae challenge. This study provides valuable data for understanding the role of SRBs in the host defense against microbial pathogens, which will facilitate future studies of host pathogen interactions in crabs. (C) 2016 Elsevier Ltd. All rights reserved.
机译:存在于哺乳动物和昆虫中的B类清除剂受体(SRB)具有多种功能。本文中,从游蟹Portunus trituberculatus克隆了一种新的SRB同源物PtSRB。 PtSRB具有538个氨基酸残基,由两个跨膜区域,一个大的细胞外环和两个细胞内尾巴组成。系统发育分析表明,PtSRB与马氏MarSRB-1和大多数果蝇SRB同源物(包括Crokemort,Peste,NinaD和Santa Maria)明显聚集,但与果蝇感觉神经元膜蛋白,MjSRB-2和所有脊椎动物SRB分离。 。实时定量PCR分析表明,PtSRB基因在所有测试组织中组成性表达。当PtSRB在人胚胎肾293T细胞中过表达时,它分布在膜和细胞质中。此外,体外测定显示rPtSRB以低亲和力结合微生物脂多糖,并以高亲和力结合脂蛋白酸和肽聚糖。用解藻弧菌或白斑综合症病毒攻击后,PtSRB转录本被下调,但卢氏念珠菌攻击后则未下调。这项研究为理解SRB在宿主对微生物病原体防御中的作用提供了宝贵的数据,这将有助于以后蟹中宿主病原体相互作用的研究。 (C)2016 Elsevier Ltd.保留所有权利。

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