首页> 美国卫生研究院文献>The Journal of Biological Chemistry >A Venom Serpin Splicing Isoform of the Endoparasitoid Wasp Pteromalus puparum Suppresses Host Prophenoloxidase Cascade by Forming Complexes with Host Hemolymph Proteinases
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A Venom Serpin Splicing Isoform of the Endoparasitoid Wasp Pteromalus puparum Suppresses Host Prophenoloxidase Cascade by Forming Complexes with Host Hemolymph Proteinases

机译:内寄生虫黄蜂的毒液Serpin剪接同工型通过与宿主血淋巴蛋白酶形成复合物抑制宿主原酚氧化酶级联反应。

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摘要

To ensure successful parasitism, parasitoid wasps inject venom along with their eggs into their hosts. The venom serves to suppress host immune responses, including melanization. Venom from Pteromalus puparum, a pupal endoparasitoid, inhibits melanization of host hemolymph in vitro in a dose-dependent manner. Using assay-guided fractionation, a serpin splicing isoform with phenoloxidase inhibitory activity was identified as P. puparum serpin-1, venom isoform (PpS1V). This serpin gene has 16 predicted splicing isoforms that differ only in the C-terminal region. RT-PCR results show that the specific serpin isoform is differentially expressed in the venom gland. Recombinant PpS1V (rPpS1V) suppresses host prophenoloxidase (PPO) activation rather than inhibiting the phenoloxidase directly. Pulldown assays show that PpS1V forms complexes with two host hemolymph proteins, here named Pieris rapae hemolymph proteinase 8 (PrHP8) and P. rapae prophenoloxidase-activating proteinase 1 (PrPAP1), based on gene sequence blasting and phylogenetic analysis. The role of rPrPAP1 in the PPO activation cascade and its interaction with rPpS1V were confirmed. The stoichiometry of inhibition of PrPAP1 by PpS1V is 2.3. PpS1V also inhibits PPO activation in a non-natural host, Ostrinia furnacalis, through forming a complex with O. furnacalis serine protease 13 (OfSP13), an ortholog to PrPAP1. Our results identify a venom-enriched serpin isoform in P. puparum that inhibits host PPO activation, probably by forming a complex with host hemolymph proteinase PrPAP1.
机译:为了确保成功寄生,寄生蜂将毒液和卵子一起注入宿主体内。毒液可抑制宿主的免疫反应,包括黑色素化。内寄生虫Pteromalus puparum的毒液以剂量依赖性方式抑制体外宿主血淋巴的黑色素化。使用测定指导的分级分离,具有酚氧化酶抑制活性的丝氨酸蛋白酶抑制剂剪接同工型被鉴定为pp。puparum serpin-1,毒液同工型(PpS1V)。该丝氨酸蛋白酶抑制蛋白基因具有16个预测的剪接同工型,仅在C端区域不同。 RT-PCR结果表明,特定的丝氨酸蛋白酶抑制剂同工型在毒腺中差异表达。重组PpS1V(rPpS1V)抑制宿主酚氧化酶原(PPO)的活化,而不是直接抑制酚氧化酶。下拉分析表明,PpS1V与两种宿主血淋巴蛋白形成复合物,在这里基于基因序列爆炸和系统发育分析,称其为菜青虫血淋巴蛋白酶8(PrHP8)和菜青虫酚氧化酶原激活酶1(PrPAP1)。证实了rPrPAP1在PPO激活级联中的作用及其与rPpS1V的相互作用。 PpS1V抑制PrPAP1的化学计量为2.3。 PpS1V还可以通过与 O形成复合物来抑制非天然宿主 Ostrinia furnacalis 中的PPO活化。 Furnacalis 丝氨酸蛋白酶13( SP13),与 Pr PAP1直系同源。我们的结果确定了 P中富含毒液的丝氨酸蛋白酶抑制剂同工型。可能通过与宿主淋巴蛋白酶 Pr PAP1形成复合物而抑制宿主PPO活化。

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