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Recombinant Phospholipase D from Loxosceles gaucho Binds to Platelets and Promotes Phosphatidylserine Exposure

机译:羊驼线虫的重组磷脂酶D与血小板结合并促进磷脂酰丝氨酸的暴露

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摘要

Spider envenomation, from the genus Loxosceles, is frequently reported as a cause of necrotic lesions in humans around the world. Among the many components found in the venom of Loxosceles genus, phospholipases D (PLDs) are the most investigated, since they can cause a massive inflammatory response, dermonecrosis, hemolysis and platelet aggregation, among other effects. Even though the PLDs induce strong platelet aggregation, there are no studies showing how the PLDs interact with platelets to promote this effect. Since many agonists must interact with specific receptors on the platelet membrane to induce aggregation, it is reasonable to expect that the PLDs may, in some way, also interact with platelets, to induce this activity. Therefore, to address this possibility, in this work, a recombinant PLD, called LgRec1, from L. gaucho was fused to enhanced green fluorescent protein (EGFP) and used as a probe to detect the interaction of LgRec1 to platelets, by fluorescence-activated cell sorter (FACS) and confocal microscopy. The preservation of biological activities of this chimera toxin was also analyzed. As a first, the results show that LgRec1 does not require plasma components to bind to platelets, although these components are necessary to LgRec1 to induce platelet aggregation. Also, the attachment of LgRec1 to human platelets’ cell membranes suggests that the exposure of phosphatidylserine (PS) may act as a scaffold for coagulation factors. Therefore, the results add new information about the binding of Loxosceles PLDs to platelets, which may help unravel how these toxins promote platelet aggregation.
机译:经常有报道说狼蛛属的蜘蛛毒化是导致全世界人类坏死性病变的原因。在牡蛎属毒液中发现的许多成分中,磷脂酶D(PLD)受到最多的研究,因为它们可引起大量的炎症反应,皮肤坏死,溶血和血小板凝集,以及其他作用。即使PLD诱导了强烈的血小板聚集,也没有研究表明PLD如何与血小板相互作用以促进这种作用。由于许多激动剂必须与血小板膜上的特定受体相互作用才能诱导聚集,因此可以合理预期PLD可能以某种方式也与血小板相互作用,从而诱导这种活性。因此,为了解决这种可能性,在这项工作中,将来自高加索氏菌的重组PLD称为LgRec1与增强的绿色荧光蛋白(EGFP)融合,并用作探针,通过荧光激活来检测LgRec1与血小板的相互作用细胞分选仪(FACS)和共聚焦显微镜。还分析了这种嵌合毒素的生物活性的保存。首先,结果表明LgRec1不需要血浆成分与血小板结合,尽管LgRec1诱导血小板聚集是必需的。另外,LgRec1与人血小板细胞膜的附着表明,磷脂酰丝氨酸(PS)的暴露可能是凝血因子的支架。因此,研究结果增加了有关凤尾虾PLD与血小板结合的新信息,这可能有助于阐明这些毒素如何促进血小板聚集。

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