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Effects of crustacean hyperglycemic hormone (CHH) on regulation of hemocyte intracellular signaling pathways and phagocytosis in white shrimp Litopenaeus vannamei

机译:甲壳动物高血糖激素(CHH)对白虾肝细胞血细胞细胞内信号途径和吞噬作用的影响

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摘要

Shrimps like other arthropods rely on innate immune system, and may have some form of adaptive immunity in defending against pathogens. Phagocytosis is one of the oldest cellular processes, serving as a development process, a feeding mechanism and especially as a key defense reaction in innate immunity of all multicellular organisms. It is confirmed that crustacean hyperglycemic hormone (CHH) is one of the most important neuropeptides produced by Neuro-endocrine Immune (NEI) regulatory network, which undertakes important roles in various biological processes, especially in immune function and stress response. In this study, the recombinant Litopenaeus vannamei CHH (rLvCHH) was obtained from a bacterial expression system and the intracellular signaling pathways involved in the mechanism of phagocytosis after rLvCHH injection was investigated. The results showed that the contents of adenylyl cyclase (AC), phospholipase C (PLC) and calmodulin (CaM) in hemocytes were increased significantly after rLvCHH injection. Furthermore, the mRNA expression levels of NF-kappa B family members (relish and dorsal) and phagocytosis-related proteins in hemocytes were basically overexpressed after rLvCHH stimulation, while the expression level of NF-kappa B repressing factor (NKRF) gene was down-regulated significantly. Eventually, the total hemocyte count and phagocytic activity of hemocyte were dramatically enhanced within 3 h. Collectively, these results indicate that shrimps L. vannamei could carry out a simple but 'smart' NEI regulation through the action of neuroendocrine factors, which could couple with their receptors and trigger the downstream signaling pathways during the phagocytic responses of hemocytes.
机译:像其他节肢动物一样依赖于先天免疫系统的虾,并且可能在捍卫病原体方面具有某种形式的适应症。吞噬作用是最古老的细胞过程之一,用作开发过程,饲养机制,特别是作为所有多细胞生物的先天免疫的关键防御反应。证实甲壳类动物高血糖激素(CHH)是神经内分泌免疫(NEI)监管网络产生的最重要的神经肽之一,其在各种生物过程中进行重要作用,尤其是免疫功能和应激反应。在该研究中,从研究RLVCHH注射术后,从细菌表达系统中获得重组型Litopenaeus Vannamei ChH(RLVCHH)和参与吞噬作用机制的细胞内信号通路。结果表明,在RLVCHH注射后,血细胞中腺苷环酶(AC),磷脂脂酶C(PLC)和钙调蛋白(CAM)的含量显着增加。此外,NF-Kappa家族成员(relish和背部)和血细胞中吞噬病相关蛋白的mRNA表达水平基本上过表达,而NF-κB抑制因子(NKRF)基因的表达水平下降 - 大幅度监管。最终,血液细胞的总血细胞计数和吞噬活性在3小时内显着增强。总的来说,这些结果表明,通过神经内分泌因子的作用,虾·瓦马萨可以通过神经内分泌因素的作用进行简单但“聪明”的Nei规则,这可能与其受体加注,并在血细胞的吞噬反应期间触发下游信号通路。

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