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国家高技术研究发展计划(2001AA628180)

作品数:3 被引量:24H指数:3
相关作者:邱丽华张汉华蔡中华江世贵宋林生更多>>
相关机构:中国水产科学研究院南海水产研究所中国科学院更多>>
发文基金:国家高技术研究发展计划广东省科技攻关计划更多>>
相关领域:农业科学生物学医药卫生更多>>

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鱼类白细胞介素1β基因的研究概况被引量:6
2005年
Interleukin-1β(IL-1β) is one of the most pleiotropic cytokines and a central regulator of the immune and inflammatory responses. Interleukin-1β was initially discovered within mice and humans and over the last 10 years has been characterized within a wide variety of animals. The IL-1β plays a key role in the inflammatory process, enhancing cell-mediated immunity by inducing the growth and proliferation of lymphocytes, connective tissue cells, and by stimulating immune and inflammatory response effector cells. As an immunoregulatory cytokine, IL-1β has the potential to enhance the immune response induced by a vaccine and/or to modulate the immune response leading to different effector mechanisms. It is produced by many cell types, including monocytes, macrophages, T and B lymphocytes, fibroblasts, and endothelial and epithelial cells. Expression is induced by a diverse range of stimuli, including mitogens, cytokines, and microbial products. There have been considerable evidences provided by biological cross reaction that fish produce IL-1β during immune responses, and the bioactivity of IL-1 in fish has been known for over a decade. But only since 1999, IL-1β gene has been cloned from the rainbow trout. And from then on, IL-1β gene has been cloned and expressed in many fish confirming that fish produces IL-1β gene during immune responses. In mammals it is produced as an inactive precursor that is processed by interleukin converting enzyme (ICE) to give a biologically active `mature’ peptide. There is no signal peptide in IL-1β and its mechanism is unknown. This is the special part of the gene structure of the IL-1β. And through the program analyzing, we found this special structure in fish IL-1β gene. This paper reviews the functions and structure of gene IL-1β and the studies of the gene IL-1β in fish recently.
邱丽华郭奕惠张汉华
关键词:IL-1Β白细胞介素1Β基因ICE鱼类
花鲈肿瘤坏死因子基因cDNA的克隆、分析与表达被引量:10
2003年
采用同源克隆法,结合锚定PCR技术,获得了花鲈(Lateolahraxjaponicus)TNFα基因cDNA的部分序列。BLAST分析表明,该序列与其他鱼类的TNFα基因具有很高的相似性与同源性。同时利用RT PCR技术,对该基因在鱼体内不同组织之间的表达差异进行了分析研究,结果表明,该基因在花鲈免疫器官头肾、脾脏、肝脏中的表达较强,而在脑中的表达较弱,在肌肉中几乎不表达。而且在经特异性病原刺激前、后的组织对比分析中,发现鱼体经LPS(lipopolysaccharide)刺激后,目的基因在免疫器官中的表达明显增强。该基因的克隆与表达为进一步深入研究海水鱼类的抗逆机理以及指导鱼类的遗传选育和遗传改良都具有重要的理论意义。
邱丽华宋林生蔡中华吴龙涛江世贵
关键词:肿瘤坏死因子同源克隆TNFΑCDNA
鱼类肿瘤坏死因子基因和受体的研究进展被引量:9
2004年
肿瘤坏死因子(Tumernerosisfactor,TNFα)是机体抵抗寄生虫、细菌和病毒入侵感染时的一种重要的介质,而且TNFα在机体内还起着其他治疗方面的功能,包括抗肿瘤、休克和胚胎发育等。TNFα主要由几种免疫细胞产生,如单核细胞或巨噬细胞、天然杀伤(NK)细胞、嗜中性白细胞和激活的B细胞等。TNFα的许多生物学活性都是通过与细胞膜表面的受体(TNFRⅠ)结合后而发挥作用的。随着分子生物学技术的发展,基因克隆技术的完善,鱼类免疫学研究取得了显著的进步,尤其是TNFα基因自2000年后相继在几种鱼类中被克隆测序并进行了表达方面的研究,因此本文就肿瘤坏死因子基因及受体的功能及近来在鱼类中的研究概况进行了综述。
邱丽华张汉华吴进锋
关键词:受体细胞因子
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