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Role of novel protein kinase C in neuroendocrine-immune regulatory network in haemocytes of Litopenaeus vannamei: An in vitro approach

机译:新型蛋白激酶C在Litopenaeus Vannamei血细胞中神经内分泌 - 免疫调节网络中的作用:一种体外方法

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Shrimp lack adaptive immune systems and mainly rely on the cellular and humoral defences, involving the haemocytes (functionally analogous to vertebrate leukocytes) in non-self matter recognition, elimination, and in downstream coagulation. Furthermore, the linkage between stress-induced catecholamine (CA), a class of biogenic amines (BAs), releasing and immunological responses has been detected in shrimp. Varied isotypes of protein kinase C (PKC) regulate multiple cellular processes following their specific location and distribution within the cells, and a novel PKC identified in Litopenaeus vannamei (termed as LvnPKC) is proposed to mediate signaling transduction of immunocompetence and BA biosynthesis. In the present study, we analyzed the effects of the LvnPKC-silenced haemocytes by co-incubating with its dsRNA on the immune responses specific to prophenoloxidase (proPO) and antioxidant systems as well as phagocytic activity. In addition, the capability of haemocytes to produce BAs was assessed. The results revealed that LvnPKC-silenced haemocytes can induce interference in phenoloxidase and superoxide dismutase activities, respiratory bursts, and phagocytic activity; meanwhile, the disturbed gene expressions of proPO activating enzyme, proPOII, lipopolysaccharideand beta-1,3-glucan-binding protein, and cytosolic manganese superoxide dismutase were detected. The same deviated pattern was observed in tyrosine, dopamine, and norepinephrine levels, and in dopamine beta-hydroxylase (DBH) activity and gene expressions of tyrosine hydroxylase, DOPA decarboxylase, and DBH involving in BA biosynthesis. Taken together, these results suggest that the immunocompetence and BA biosynthesis of haemocytes can be mediated via LvPKC signaling transduction, which proved the presence of a neuroendocrine-immune regulatory network in haemocytes.
机译:虾缺乏自适应免疫系统,主要依赖于细胞和体液防御,涉及血症(功能上类似于脊椎动物白细胞)在非自我质疑,消除和下游凝血中。此外,在虾中检测到应力诱导的儿茶酚胺(CA),一类生物胺(BAS),释放和免疫反应之间的连锁。蛋白激酶C(PKC)的不同同位型调节细胞内特定位置和分布后的多种细胞过程,并提出在Litopenaeus Vannamei(称为LVNPKC)中鉴定的新型PKC,以介导免疫占状和BA生物合成的信号转导。在本研究中,我们通过将LVNPKC沉默的血液细胞与其DSRNA的免疫应育对特异性脱氧酶(PROPO)和抗氧化剂体系以及吞噬活性的影响分析。此外,评估产量胰腺血糖的能力。结果表明,LVNPKC沉默的血浆可诱导酚氧化酶和超氧化物歧化酶活性,呼吸爆发和吞噬活性的干扰;同时,检测PROP活化酶,PROPOII,Lipopolysachycarideand Beta-1,3-葡聚糖结合蛋白和细胞溶质锰超氧化物歧化酶的受扰动的基因表达。在酪氨酸,多巴胺和去甲肾上腺素水平中观察到相同的偏移模式,以及在多巴胺β-羟化酶(DBH)活性和酪氨酸羟化酶,DOPA脱羧酶和DBH的基因表达中涉及BA生物合成的DBH。总之,这些结果表明,可以通过LVPKC信号转导的免疫组织和BA生物合成,从而证明了在血细胞中存在神经内分泌 - 免疫调节网络的存在。

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