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病原菌识别蛋白(丝氨酸蛋白酶同源物 Sp-SPH)的分离、基因克隆及其在锯缘青蟹抗菌反应中的表达谱分析。

Isolation, gene cloning and expression profile of a pathogen recognition protein: a serine proteinase homolog (Sp-SPH) involved in the antibacterial response in the crab Scylla paramamosain.

机构信息

State Key Laboratory of Marine Environmental Science, College of Oceanography and Environmental Science, Xiamen University, Siming Nanlu No. 422, Xiamen, Fujian, PR China.

出版信息

Dev Comp Immunol. 2010 Jul;34(7):741-8. doi: 10.1016/j.dci.2010.02.005. Epub 2010 Feb 20.

Abstract

To identify the frontline defense molecules against microbial infection in the crab Scylla paramamosain, a live crab pathogenic microbe, Vibrio parahaemolyticus, was recruited as an affinity matrix to isolate innate immune factors from crab hemocytes lysate. Interestingly, a serine proteinase homolog (Sp-SPH) was obtained together with an antimicrobial peptide-antilipopolysaccharide factor (Sp-ALF). We then determined the full-length cDNA sequence of Sp-SPH, which contained 1298bp with an open reading frame of 1107bp encoding 369 amino acid residues. Multiple alignment analysis showed that the deduced amino acid sequences of Sp-SPH shared overall identity (83.8%) with those of SPH-containing proteins from other crab species. Tissue distribution analysis indicated that the Sp-SPH transcripts were present in various tissues including eye stalk, subcuticular epidermis, gill, hemocyte, stomach, thorax ganglion, brain and muscle of S. paramamosain. The Sp-SPH was highly expressed in selected different development stages including embryo (I, II, III and V), zoea (I), megalopa, and juvenile. Importantly, the prophenoloxidase was also present in the embryos, zoea, juvenile and adult crabs, but relatively lower in megalopa compared to those of other stages. Furthermore, the Sp-SPH mRNA expression showed a statistically significant increase (P<0.05) in both hemocyte and subcuticular epidermis at 24h, and in gill at 96h after challenge of V. parahaemolyticus determined by quantitative real-time PCR. Taken together, the live-bacterial-binding activity and the acute-phase response against bacterial infection of Sp-SPH suggested that it might function as an innate immune recognition molecule and play a key role in host defense against microbe invasion in the crab S. paramamosain.

摘要

为了鉴定中华绒螯蟹(Scylla paramamosain)抵御微生物感染的一线防御分子,我们将一种活体致病细菌,副溶血弧菌(Vibrio parahaemolyticus)作为亲和基质,从蟹血细胞裂解物中分离先天免疫因子。有趣的是,我们获得了一种丝氨酸蛋白酶同源物(Sp-SPH)和一种抗菌肽-抗脂多糖因子(Sp-ALF)。随后,我们确定了 Sp-SPH 的全长 cDNA 序列,其包含 1298bp 的开放阅读框,编码 369 个氨基酸残基。多重序列比对分析表明,Sp-SPH 的推导氨基酸序列与其他蟹种的 SPH 蛋白同源物具有整体同一性(83.8%)。组织分布分析表明,Sp-SPH 转录本存在于各种组织中,包括眼柄、皮下表皮、鳃、血细胞、胃、胸神经节、脑和肌肉。Sp-SPH 在胚胎(I、II、III 和 V)、幼体(I)、大眼幼体和幼蟹等选定的不同发育阶段高度表达。重要的是,原酚氧化酶也存在于胚胎、幼体、幼蟹和成蟹中,但在大眼幼体中相对较低,与其他阶段相比。此外,通过定量实时 PCR 检测,Sp-SPH mRNA 表达在副溶血弧菌攻毒后 24h 的血细胞和皮下表皮以及 96h 的鳃中均呈统计学显著增加(P<0.05)。综上所述,Sp-SPH 具有与活体细菌结合的活性和对细菌感染的急性期反应,表明它可能作为先天免疫识别分子,在中华绒螯蟹宿主抵御微生物入侵中发挥关键作用。

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