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首页> 外文期刊>Fish & Shellfish Immunology >NK-lysin is highly conserved in European sea bass and gilthead seabream but differentially modulated during the immune response
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NK-lysin is highly conserved in European sea bass and gilthead seabream but differentially modulated during the immune response

机译:NK-LYSIN在欧洲鲈鱼和GILTHEAD河流中高度保守,但在免疫应答期间差异调节

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摘要

Fish NK-lysin (NKL), an orthologous to human granulysin, exerts a dual role as an antimicrobial peptide (AMP) and as a direct executor of T cytotoxic and natural killer cells during the cell-mediated cytotoxic (CMC) response. Although its best-known function is as AMP against bacteria, recent studies point to a special role of NKL in antiviral responses. Nodavirus (NNV) is a spreading threat in Mediterranean aquaculture. In this study, we have identified and compared the expression pattern of European sea bass and gilthead seabream NKL and evaluated its transcription in different tissues and its regulation in head-kidney leucocyte (HKLs) stimulated in vitro with different immunostimulants, under CMC response and upon an in vivo infection with NNV. Our results showed that nkl transcription is highly expressed in spleen, thymus and skin with species-specific differences. Interestingly, the expression pattern in both species was very different upon treatment. While sea bass nkl transcription was increased in HKLs by the T mitogen phytohemagglutinin all the stimulators inhibited it in seabream HKLs. Similar results occurred in NNV-infected fish where the transcription was increased in sea bass tissues and down-regulated in seabream. Curiously, during CMC assays, nkl transcription was significantly increased in seabream HKLs against NNV-infected fish cell lines but this was not observed in sea bass leucocytes. The potential role of NKL as CMC effector molecule or as AMP in fish will be discussed.
机译:鱼NK-lysin(NK1),对人颗粒素的直晶,作为抗微生物肽(AMP)施加双重作用,并且在细胞介导的细胞毒性(CMC)反应期间作为T细胞毒性和天然杀伤细胞的直接执行者。虽然其最着名的功能是针对细菌的AMP,但最近的研究指出了NKL在抗病毒反应中的特殊作用。 Nodavirus(NNV)是地中海水产养殖的展示威胁。在这项研究中,我们已经确定并比较了欧洲鲈鱼和吉尔亨·海布雷姆NKL的表达模式,并评估了在不同免疫刺激物的体外刺激的不同组织中的转录及其在不同免疫刺激物的体外刺激,并在CMC反应下进行刺激nnv体内感染。我们的研究结果表明,NKL转录在脾脏,胸腺和皮肤中高度表达,具有特异性差异。有趣的是,两种物种的表达模式在治疗时非常不同。虽然Sea Bass NK1转录在HKLS中,T丝就来植物植物血小杂素蛋白,所有刺激器抑制它在Seabream HKLS中。在海底疱疹组织中,在海底组织中增加了类似的结果,在海底疱疹组织中增加了类似的结果。好奇地,在CMC测定期间,在对抗NNV感染的鱼细胞系中,NK1转录显着增加,但在海底白细胞中未观察到这一点。将讨论NKL作为CMC效应分子或在鱼中作为CMC效应分子的潜在作用。

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