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Serotonin modulates insect hemocyte phagocytosis via two different serotonin receptors

机译:5-羟色胺通过两种不同的5-羟色胺受体调节昆虫血细胞吞噬作用

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摘要

Serotonin (5-HT) modulates both neural and immune responses in vertebrates, but its role in insect immunity remains uncertain. We report that hemocytes in the caterpillar, Pieris rapae are able to synthesize 5-HT following activation by lipopolysaccharide. The inhibition of a serotonin-generating enzyme with either pharmacological blockade or RNAi knock-down impaired hemocyte phagocytosis. Biochemical and functional experiments showed that naive hemocytes primarily express 5-HT1B and 5-HT2B receptors. The blockade of 5-HT1B significantly reduced phagocytic ability; however, the blockade of 5-HT2B increased hemocyte phagocytosis. The 5-HT1B-null Drosophila melanogaster mutants showed higher mortality than controls when infected with bacteria, due to their decreased phagocytotic ability. Flies expressing 5-HT1B or 5-HT2B RNAi in hemocytes also showed similar sensitivity to infection. Combined, these data demonstrate that 5-HT mediates hemocyte phagocytosis through 5-HT1B and 5-HT2B receptors and serotonergic signaling performs critical modulatory functions in immune systems of animals separated by 500 million years of evolution.>DOI:
机译:5-羟色胺(5-HT)调节脊椎动物的神经和免疫反应,但其在昆虫免疫中的作用仍不确定。我们报道毛虫,菜青虫中的血细胞能够通过脂多糖激活后合成5-HT。药理学阻滞或RNAi抑制可抑制血红素生成酶,从而削弱血细胞吞噬作用。生化和功能实验表明,幼稚血细胞主要表达5-HT1B和5-HT2B受体。 5-HT1B的阻滞显着降低吞噬能力。然而,对5-HT2B的阻断增加了血细胞吞噬作用。 5-HT1B空果蝇突变体由于吞噬能力降低,在感染细菌后显示出比对照组更高的死亡率。在血细胞中表达5-HT1B或5-HT2B RNAi的果蝇也显示出相似的感染敏感性。综合起来,这些数据表明5-HT通过5-HT1B和5-HT2B受体介导血细胞吞噬作用,而血清素能信号传导在被5亿年进化分开的动物的免疫系统中发挥关键的调节功能。> DOI:

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