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First identification and characterization of a triple WAP domain containing protein in Procambarus clarkii provides new insights into the classification and evolution of WAP proteins in crustacean

机译:Procambarus Clarkii含有蛋白质的三重WAP结构域的首先鉴定和表征为甲壳类动物的WAP蛋白的分类和演化提供了新的见解

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摘要

Whey acidic protein domain (WAPD) is a usual motif in crustaceans, and is found mainly in the immune-related proteins. In the present study, a protein containing three tandem WAPDs was identified in red swamp crayfish Procambarus clarkii and designated as PcTWD. This is the first report of a protein of such domain architecture in crustaceans. Introducing the WAPDs of PcTWD into phylogenetic analysis led to the classification of crustacean WAP proteins into classical crustins and proteins containing solely WAPDs. PcTWD was widely expressed in multiple tissues, including hemocytes, gills, hepatopancreas, heart, stomach and intestine. Its expression could be significantly induced by Staphylococcus aureus or Aeromonas hydrophila challenge. Knockdown PcTWD expression by RNAi suppressed host resistance against A. hydrophila, while exogenous recombinant PcTWD could enhance the host immunity. The three WAPDs showed a labor division. The first two domains were responsible for the protease inhibitory activity, and the third domain contributed to the antimicrobial activity. Thus PcTWD was found as an important protein in crayfish antibacterial immunity.
机译:乳清酸性蛋白质结构域(WAPD)是甲壳类动物的常用主题,主要在免疫相关蛋白质中发现。在本研究中,在红色沼泽小龙虾Procambarus clarkii中鉴定了一种含有三个串联Wapds的蛋白质,并指定为PCTWD。这是甲壳类动物在此类领域建筑蛋白质的第一报告。将PCTWD的WAPDS引入系统发育分析导致甲壳类动物WAP蛋白的分类成古典甲壳素和含有仅WAPDS的蛋白质。 PCTWD在多种组织中广泛表达,包括血细胞,鳃,肝病,心脏,胃和肠道。它的表达可以由金黄色葡萄球菌或Aeromonas疏水菌攻击显着诱导。 RNAi敲低PCTWD表达抑制了对A.疏水物的宿主抗性,而外源重组PCTWD可以增强宿主免疫力。这三个WAPDS显示了劳动部门。前两个域对蛋白酶抑制活性负责,并且第三域有助于抗微生物活性。因此,PCTWD被发现是小龙虾抗菌免疫中的重要蛋白质。

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