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首页> 外文期刊>BMC Veterinary Research >Molecular characterization of three novel perforins in common carp ( Cyprinus carpio L.) and their expression patterns during larvae ontogeny and in response to immune challenges
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Molecular characterization of three novel perforins in common carp ( Cyprinus carpio L.) and their expression patterns during larvae ontogeny and in response to immune challenges

机译:鲤鱼中三种新型穿孔素的分子表征及其在幼虫个体发育过程中以及对免疫挑战的表达模式

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In the host immune system, perforin is a cytotoxic effector molecule that eliminate virus-infected and malignant cells. Moreover, some recent studies also imply the involvement of perforin in antibacterial immunity. Common carp (Cyprinus carpio L.), one of the most economically important fish species in China, has a high susceptibility to viruses and bacteria. Thus far, in common carp, no data are available regarding the identification and immunologic function of the perforin. In the present study, the cDNA and genomic DNA sequences of three perforin isoform genes were cloned and characterized in common carp, named CcPRF1, CcPRF2 and CcPRF3. Amino acid sequences of the three CcPRFs were quite different, with identities ranged from 37.3 to 39.5%. Phylogenetic analysis showed that three CcPRFs, each in a separate sub-branch, possessed closer evolutionary relationship with other teleost perforins, especially with cyprinid fishes, than higher vertebrates. Expression analysis revealed that each CcPRF gene was differentially expressed in all of the nine tested tissues. During larvae ontogeny, each CcPRF displayed a distinct expression pattern, while with a common expression peak at 22?days post hatching (dph). Moreover, in vivo or in vitro, after stimulation with polyI:C, LPS and Aeromonas hydrophila, each CcPRF was induced significantly, with differential expression dynamics. Our findings suggest that perforin might play significant roles in larval immune system and in the immune defense of common carp against viral and bacterial pathogens. Meantime, the differential expression dynamics seem to imply possible different cellular locations or functional differences across various CcPRF isoforms.
机译:在宿主免疫系统中,穿孔素是一种消除病毒感染和恶性细胞的细胞毒性效应分子。而且,最近的一些研究还暗示穿孔素参与抗菌免疫。鲤鱼(Cyprinus carpio L.)是中国经济上最重要的鱼类之一,对病毒和细菌的敏感性很高。迄今为止,在鲤鱼中,没有关于穿孔素的鉴定和免疫功能的数据。在本研究中,在普通鲤鱼(CcPRF1,CcPRF2和CcPRF3)中克隆并鉴定了三个穿孔素同工型基因的cDNA和基因组DNA序列。这三个CcPRF的氨基酸序列差异很大,同一性范围为37.3%至39.5%。系统发育分析表明,与高等脊椎动物相比,三个CcPRF与每个硬骨鱼穿孔素,特别是与塞浦路斯鱼类,在各自的独立分支中具有更紧密的进化关系。表达分析表明,每个CcPRF基因在所有9个测试组织中均差异表达。在幼体发育过程中,每个CcPRF均表现出独特的表达模式,而在孵化后22天(dph)具有共同的表达高峰。此外,在体内或体外,在用polyI:C,LPS和嗜水气单胞菌刺激后,每种CcPRF均被显着诱导,并具有不同的表达动态。我们的发现表明,穿孔素可能在幼虫的免疫系统以及鲤鱼对病毒和细菌病原体的免疫防御中发挥重要作用。同时,差异表达动力学似乎暗示跨各种CcPRF同工型的可能的不同细胞位置或功能差异。

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