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ADP binding by the Culex quinquefasciatus mosquito D7 salivary protein enhances blood feeding on mammals

机译:Culex Quinquefascastus蚊子D7唾液蛋白的ADP结合增强了哺乳动物的血液

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During blood-feeding, mosquito saliva is injected into the skin to facilitate blood meal acquisition. D7 proteins are among the most abundant components of the mosquito saliva. Here we report the ligand binding specificity and physiological relevance of two D7 long proteins from Culex quinquefasciatus mosquito, the vector of filaria parasites or West Nile viruses. CxD7L2 binds biogenic amines and eicosanoids. CxD7L1 exhibits high affinity for ADP and ATP, a binding capacity not reported in any D7. We solve the crystal structure of CxD7L1 in complex with ADP to 1.97?? resolution. The binding pocket lies between the two protein domains, whereas all known D7s bind ligands either within the N- or the C-terminal domains. We demonstrate that these proteins inhibit hemostasis in ex vivo and in vivo experiments. Our results suggest that the ADP-binding function acquired by CxD7L1 evolved to enhance blood-feeding in mammals, where ADP plays a key role in platelet aggregation.
机译:在血液喂食过程中,蚊子唾液注入皮肤以方便血液膳食。 D7蛋白是蚊子唾液最丰富的组成部分。在这里,我们报告了来自Culex Quinquefasciatus蚊子的两种D7长蛋白的配体结合特异性和生理学相关性,菲拉米寄生虫或西尼罗病毒的载体。 CXD7L2结合生物胺和果香糖。 CXD7L1对ADP和ATP表现出高亲和力,在任何D7中未报告的结合能力。我们用ADP解决CXD7L1的晶体结构,与ADP到1.97?解析度。粘合口袋位于两个蛋白质结构域之间,而所有已知的D7s在N-或C末端结构域内结合配体。我们证明这些蛋白质抑制了离体和体内实验中的止血。我们的研究结果表明,CXD7L1获得的ADP结合功能进化以增强哺乳动物的血液喂养,其中ADP在血小板聚集中发挥关键作用。

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