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首页> 外文期刊>Parasitology Research >Identification, immunolocalization, and immunological characterization of nitric oxide synthase-interacting protein from Clonorchis sinensis
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Identification, immunolocalization, and immunological characterization of nitric oxide synthase-interacting protein from Clonorchis sinensis

机译:中华支睾吸虫一氧化氮合酶相互作用蛋白的鉴定,免疫定位和免疫学表征

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Recently, accumulating evidences indicate that nitric oxide (NO) is a potent mediator with diverse roles in regulating cellular functions, signaling pathways, and variety of pathological processes. In the present study, using data from the published genomic for Clonorchis sinensis (C. sinensis), we investigated a gene encoding nitric oxide synthase-interacting protein (NOSIP) of C. sinensis. Recombinant CsNOSIP (rCsNOSIP) was expressed and purified from Escherichia coli BL21. The open reading frame of CsNOSIP comprises 867 bp which encodes 289 amino acids and shares 72.9, 45.2, 47, 46.4, and 45.8 % identity with NOSIP from Schistosoma mansoni, Xenopus laevis, Rattus norvegicus, Mus musculus, and Homo sapiens, respectively. Bioinformatics analysis suggested that the full-length sequence contains an eNOS-interacting domain and numerous B-cell epitopes. Quantitative RT-PCR indicated that CsNOSIP differentially transcribed throughout the adult worms, metacercariae, and egg stages of C. sinensis, and were highly expressed in the adult worms. Moreover, western blot analysis showed that the rCsNOSIP could be detected by the serum from BALB/c mice infected with C. sinensis and the serum from BALB/c mice immunized with excretory/secretory products (ESPs). Furthermore, immunolocalization assay showed that CsNOSIP was specifically localized in the intestine, vitellarium, and eggs of adult worm. Both immunoblot and immunolocalization results demonstrated that CsNOSIP was one component of ESPs of C. sinensis, which could be supported by SignalP analysis. Moreover, analysis of the antibody subclass and cytokine profile demonstrated that subcutaneously immunized BALB/c mice with rCsNOSIP could significantly enhance serum IgG1 level and up-regulate expression of IL-4 and IL-6 in the splenocytes. Our results suggested that CsNOSIP was an important antigen exposed to host immune system and probably involved in immune regulation of host by inducing Th2-polarized immune response.
机译:最近,越来越多的证据表明,一氧化氮(NO)是有效的介体,在调节细胞功能,信号传导途径和多种病理过程中具有多种作用。在本研究中,使用来自已公开的华支睾吸虫基因组的数据,我们研究了编码中华梭菌一氧化氮合酶相互作用蛋白(NOSIP)的基因。表达重组CsNOSIP(rCsNOSIP),并从大肠杆菌BL21中纯化。 CsNOSIP的开放阅读框包含867 bp,编码289个氨基酸,与曼氏血吸虫,非洲爪蟾,褐家鼠,小家鼠和智人的NOSIP分别具有72.9、45.2、47、46.4和45.8%的同一性。生物信息学分析表明,全长序列包含一个eNOS相互作用域和多个B细胞表位。定量RT-PCR表明,CsNOSIP在中华线虫的整个成虫,尾and和卵期均差异转录,并在成虫中高表达。而且,蛋白质印迹分析表明,可以用感染中华假丝酵母的BALB / c小鼠的血清和用排泄/分泌产物(ESPs)免疫的BALB / c小鼠的血清检测rCsNOSIP。此外,免疫定位分析表明,CsNOSIP特异地定位于成虫的肠,vi骨和卵中。免疫印迹和免疫定位结果均表明CsNOSIP是中华绒螯蟹ESP的成分之一,SignalP分析可以为CsNOSIP提供支持。此外,对抗体亚类和细胞因子谱的分析表明,用rCsNOSIP皮下免疫的BALB / c小鼠可以显着增强血清IgG1水平并上调脾细胞中IL-4和IL-6的表达。我们的结果表明,CsNOSIP是暴露于宿主免疫系统的重要抗原,可能通过诱导Th2极化的免疫反应而参与宿主的免疫调节。

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