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首页> 外文期刊>Fish & Shellfish Immunology >Functional characterization and subcellular localization of miiuy croaker cytosolic MITA involved in activation NF-kappa B pathway
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Functional characterization and subcellular localization of miiuy croaker cytosolic MITA involved in activation NF-kappa B pathway

机译:活化NF-κB途径中涉及Miiuy Crokaker Citosolic mita的功能性表征和亚细胞定位

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In the innate immune responses in host protection, pattern recognition receptors are involve in a variety of sensing mechanisms to recognize and counter pathogen invasion. Recently, a resident endoplasmic reticulum adaptor, stimulator of interferon genes (STING) protein, also called MPYS, ERIS and MITA, has been indicated to play a critical role in innate immune responses. In this study, bioinformatics and functions of MITA from miiuy croaker (mmiMITA) were characterized. MmiMITA was ubiquitously expressed in the detected tissues of miiuy croaker and the highest expression in liver. Moreover, the expressions were dramatically upregulated in liver, spleen and kidney after stimulation with poly (I:C). Meanwhile, the expressions analysis of mmiMITA at the transcriptome database further prove that upon different stimuli, mmiMITA is most sensitive to the stimulation of poly(I:C) in vivo. Furthermore, the immunofluorescence of mmiMITA shows in the cytoplasm of Hela cells. Overexpression of mmiMITA can activate NF-kappa B reporter gene, it implying that mmiMITA might act as an important role in immune responses by activating NF-kappa B to induce the production of pro-inflammatory cytokines. The research of mmiMITA will enrich the information of teleost fish MITA and the functional experiments also will be helpful for researching about fish immune systems in the future. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在宿主保护中的先天免疫应答中,模式识别受体涉及各种传感机制,以识别和抵抗病原体侵袭。最近,已经表明,常规内质网衔接子,干扰素基因(Sting)蛋白(Sting)蛋白的刺激剂,也称为MPYS,Eris和Mita,在先天免疫反应中发挥着关键作用。在这项研究中,特征在于,来自Miiuy Crokaker(MMIMITA)的MITA的生物信息学和功能。 MMIMITA在MIIUY Crokaker的检测到组织中普遍地表达,肝脏中的最高表达。此外,在用聚(I:C)刺激后,表情在肝脏,脾和肾脏中显着上调。同时,转录组数据库的MMIMITA表达分析进一步证明,在不同的刺激时,MMIMITA对体内聚(I:C)的刺激最敏感。此外,MMIMITA的免疫荧光显示在HELA细胞的细胞质中。 MMIMITA的过度表达可以激活NF-Kappa报告基因,这意味着MMIMITA可以通过激活NF-Kappa B诱导促炎细胞因子的产生来作为免疫反应中的重要作用。 MMIMITA的研究将丰富Textost鱼类Mita的信息,功能实验也将有助于在未来研究鱼类免疫系统。 (c)2017 Elsevier Ltd.保留所有权利。

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