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Cloning and Immunosuppressive Properties of an Acyl-Activating Enzyme from the Venom Apparatus of Tetrastichus brontispae (Hymenoptera: Eulophidae)

机译:拟南芥(膜翅目:Eulophidae)毒液中一种酰基活化酶的克隆及其免疫抑制特性

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摘要

Venom injected into the host plays vital roles in facilitating successful parasitization and development for parasitoid wasps, especially those devoid of polydnavirus, and the abundant venom proteins appear to be most likely involved in parasitization success. Previously, we found the four most abundant venom proteins, including 4-coumarate:CoA ligase-like 4 (4CL4-like), in the (Hymenoptera: Eulophidae) venom apparatus. In this study, we cloned, expressed 4CL4-like (Tb4CL4-like) in , and investigated its immunosuppressive properties. The deduced amino acid sequence for Tb4CL4-like shares high identity at conserved amino acids associated with the acyl-activating enzyme (AAE) consensus motif but shows only <40% identity with the members in the AAE superfamily. mRNA abundance analysis indicated that Tb4CL4-like was transcribed mainly in the venom apparatus. Recombinant Tb4CL4-like inhibited (Coleoptera: Chrysomelidae) pupal cellular encapsulation and spreading by targeting the hemocyte cytoskeleton and reduced the hemocyte-mediated phagocytosis of in vivo. Moreover, Tb4CL4-like exhibited greater affinity to palmitic acid and linolenic acid based on the molecular docking assay and is hypothesized to be involved in fatty acid metabolism. In conclusion, our results suggest that Tb4CL4-like may be an immunity-related AAE protein that is involved in the regulation of host immunity through fatty acid metabolism-derived signaling pathways.
机译:注射到宿主中的毒液在促进寄生虫黄蜂(尤其是没有多核病毒的寄生虫)的成功寄生和发展中起着至关重要的作用,而丰富的毒液蛋白似乎最有可能参与寄生成功。以前,我们在(膜翅目:Eulophidae)毒液装置中发现了四种最丰富的毒液蛋白,包括4-香豆酸盐:CoA连接酶样4(4CL4样)。在这项研究中,我们克隆了,并在中表达了4CL4样(Tb4CL4样),并研究了其免疫抑制特性。推导的Tb4CL4样氨基酸序列在与酰基激活酶(AAE)共有基序相关的保守氨基酸上具有高度同一性,但与AAE超家族成员仅显示<40%的同一性。 mRNA丰度分析表明,Tb4CL4样主要在毒液中转录。重组Tb4CL4样通过靶向血细胞的细胞骨架抑制(鞘翅目:金眼科)p细胞的包囊和扩散,并减少了体内的血细胞介导的吞噬作用。此外,基于分子对接分析,Tb4CL4-样对棕榈酸和亚麻酸表现出更大的亲和力,并被认为与脂肪酸代谢有关。总之,我们的结果表明,Tb4CL4-like可能是一种与免疫相关的AAE蛋白,通过脂肪酸代谢衍生的信号通路参与宿主免疫的调节。

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