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鉴定中国明对虾中的三种不同类型的丝氨酸蛋白酶(一种 SP 和两种 SPH)。

Identification of three different types of serine proteases (one SP and two SPHs) in Chinese white shrimp.

机构信息

The Key Laboratory of Plant Cell Engineering and Germplasm Innovation of Ministry of Education, School of Life Sciences, Shandong University, Jinan, Shandong 250100, China.

出版信息

Fish Shellfish Immunol. 2011 Feb;30(2):456-66. doi: 10.1016/j.fsi.2010.11.009. Epub 2010 Nov 23.

Abstract

Serine proteases (SPs) and serine protease homologs (SPHs) participate in digestion, embryonic development, blood coagulation, and immune defense responses. In this paper, we identify one SP and two SPHs, including a masquerade SPH (FcMas), a CUB domain containing SP (FcCUBSP), and a single domain containing SPH (FcSPH2) in Chinese white shrimp, Fenneropenaeus chinensis. FcMas has a Gly-rich region formed by three repeats of LGGQGGG, a clip domain and a C-terminal SP-like domain. Absence of Ser catalytic residue results in the loss of serine protease activity of FcMas, which then functions as an SPH. FcCUBSP has a signal peptide, followed by a CUB domain and an SP domain. FcSPH2 has a signal peptide and an SP-like domain. Loss of one catalytic residue (H) makes FcSPH2 catalytically inactive, which is considered an SPH. Phylogenetic analysis shows that FcMas and other SPHs from shrimp or insect are classified into one group. FcSPH2 is grouped in the chymotrypsin family. RT-PCR results show that FcMas mRNA is mainly distributed in hemocytes and gills. FcCUBSP is only detected in gills, whereas FcSPH2 is found in hepatopancreas only. QRT-PCR is used to analyze changes of FcMas, FcCUBSP and FcSPH2 in some tissues challenged with white spot syndrome virus (WSSV) or Vibrio. FcMas in hemocytes is down-regulated by WSSV or Vibrio challenge, and down-regulated by WSSV in gills. However, it is up-regulated upon Vibrio challenge in gills. FcCUBSP in gills and FcSPH2 in hepatopancreas are up-regulated upon WSSV or Vibrio challenge. Results suggest the roles of FcMas, FcCUBSP and FcSPH2 in shrimp's innate immunity.

摘要

丝氨酸蛋白酶(SPs)和丝氨酸蛋白酶同源物(SPHs)参与消化、胚胎发育、血液凝固和免疫防御反应。在本文中,我们鉴定了中国明对虾(Fenneropenaeus chinensis)中的一个 SP 和两个 SPHs,包括一个伪装 SPH(FcMas)、一个含有 CUB 结构域的 SP(FcCUBSP)和一个含有单一结构域的 SPH(FcSPH2)。FcMas 具有由三个 LGGQGGG 重复形成的富含甘氨酸的区域、一个 clip 结构域和一个 C 端 SP 样结构域。缺乏 Ser 催化残基导致 FcMas 丧失丝氨酸蛋白酶活性,从而发挥 SPH 的作用。FcCUBSP 具有信号肽,其后是 CUB 结构域和 SP 结构域。FcSPH2 具有信号肽和 SP 样结构域。一个催化残基(H)的缺失使 FcSPH2 失去催化活性,被认为是 SPH。系统发育分析表明,FcMas 和其他来自虾或昆虫的 SPH 被归类为一组。FcSPH2 被归类于糜蛋白酶家族。RT-PCR 结果表明,FcMas mRNA 主要分布在血细胞和鳃中。FcCUBSP 仅在鳃中检测到,而 FcSPH2 仅在肝胰腺中发现。QRT-PCR 用于分析 FcMas、FcCUBSP 和 FcSPH2 在受到白斑综合征病毒(WSSV)或弧菌攻击的一些组织中的变化。血细胞中的 FcMas 受 WSSV 或弧菌攻击下调,鳃中的 FcMas 受 WSSV 下调,但受弧菌刺激上调。然而,在鳃中受弧菌刺激上调。受 WSSV 或弧菌刺激时,鳃中的 FcCUBSP 和肝胰腺中的 FcSPH2 上调。结果表明 FcMas、FcCUBSP 和 FcSPH2 在虾的先天免疫中发挥作用。

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