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Leishmania amazonensis exhibits phosphatidylserine-dependentprocoagulant activity a process that is counteracted by sandflysaliva

机译:亚马逊利什曼原虫表现出磷脂酰丝氨酸依赖性促凝活性被sand蝇抵消的过程唾液

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摘要

Leishmania parasites expose phosphatidylserine (PS) on their surface, a process that has been associated with regulation of host's immune responses. In this study we demonstrate that PS exposure by metacyclic promastigotes of Leishmania amazonensis favours blood coagulation. L. amazonensis accelerates in vitro coagulation of human plasma. In addition, L. amazonensis supports the assembly of the prothrombinase complex, thus promoting thrombin formation. This process was reversed by annexin V which blocks PS binding sites. During blood meal, Lutzomyia longipalpis sandfly inject saliva in the bite site, which has a series of pharmacologically active compounds that inhibit blood coagulation. Since saliva and parasites are co-injected in the host during natural transmission, we evaluated the anticoagulant properties of sandfly saliva in counteracting the procoagulant activity of L. amazonensis . Lu. longipalpis saliva reverses plasma clotting promoted by promastigotes. It also inhibits thrombin formation by the prothrombinase complex assembled either in phosphatidylcholine (PC)/PSvesicles or in L. amazonensis . Sandfly saliva inhibits factorX activation by the intrinsic tenase complex assembled on PC/PS vesicles andblocks factor Xa catalytic activity. Altogether our results show that metacyclicpromastigotes of L. amazonensis are procoagulant due to PSexposure. Notably, this effect is efficiently counteracted by sandflysaliva.
机译:利什曼原虫寄生虫在其表面暴露磷脂酰丝氨酸(PS),该过程与调节宿主的免疫反应有关。在这项研究中,我们证明了亚马逊利什曼原虫的前环前鞭毛体PS暴露有利于血液凝结。亚马逊乳杆菌可加速人血浆的体外凝结。另外,亚马逊乳杆菌支持凝血酶原酶复合物的组装,从而促进凝血酶的形成。膜联蛋白V逆转了该过程,其阻断PS结合位点。进餐时,长足Lutzomyia longipalpis sandfly在咬伤部位注入唾液,唾液中含有一系列抑制血液凝结的药理活性化合物。由于唾液和寄生虫是在自然传播过程中共同注入宿主体内的,因此我们评估了沙蝇唾液的抗凝特性,以抵消亚马逊乳杆菌的促凝活性。鲁。 longipalpis唾液可逆转前鞭毛体促进的血浆凝结。它也通过组装在磷脂酰胆碱(PC)/ PS中的凝血酶原酶复合物抑制凝血酶的形成囊泡或L. amazonensis。 fly蝇唾液抑制因子X激活由内在的Tenase复合物组装在PC / PS囊泡上和阻断因子Xa的催化活性。总而言之,我们的结果表明亚马逊乳杆菌的前鞭毛体由于PS而促凝接触。值得注意的是,沙蝇可以有效地抵消这种影响唾液。

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