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水黾唾液中溶血磷脂酰胆碱的麻痹活性。

Paralytic activity of lysophosphatidylcholine from saliva of the waterbug Belostoma anurum.

机构信息

Instituto de Bioquímica Médica, Centro de Ciências da Saúde, Universidade Federal do Rio de Janeiro, PO Box 68041, Cidade Universitária, Ilha do Fundão, Av. Bauhínia 400, Rio de Janeiro, CEP 21941-590, RJ, Brazil.

出版信息

J Exp Biol. 2010 Oct 1;213(Pt 19):3305-10. doi: 10.1242/jeb.041954.

Abstract

Lysophosphatidylcholine (LPC) is a major bioactive lipid that is enzymatically generated by phospholipase A(2) (PLA(2)). Previously, we showed that LPC is present in the saliva of the blood-sucking hemipteran Rhodnius prolixus and modulates cell-signaling pathways involved in vascular biology, which aids blood feeding. Here, we show that the saliva of the predator insect Belostoma anurum contains a large number of lipids with LPC accounting for 25% of the total phospholipids. A PLA(2) enzyme likely to be involved in LPC generation was characterized. The activity of this enzyme is 5-fold higher in Belostoma saliva than in other studied hemipterans, suggesting a close association with the predator feeding habits of this insect. Belostoma employs extra-oral digestion, which allows for ingestion of larger prey than itself, including small vertebrates such as amphibians and fish. Therefore, prey immobilization during digestion is essential, and we show here that Belostoma saliva and B. anurum saliva purified LPC have paralytic activity in zebrafish. This is the first evidence that lysophospholipids might play an important role in prey immobilization, in addition to contributing to blood feeding, and might have been an evolutionary acquisition that occurred long before the appearance of hematophagy in this animal group.

摘要

溶血磷脂酰胆碱 (LPC) 是一种主要的生物活性脂质,它通过磷脂酶 A(2) (PLA(2)) 酶解生成。先前,我们发现吸血半翅目昆虫 R. prolixus 的唾液中存在 LPC,并且它能调节与血管生物学相关的细胞信号通路,从而促进吸血。在这里,我们发现捕食性昆虫 B. anurum 的唾液中含有大量的脂质,其中 LPC 占总磷脂的 25%。我们鉴定了一种可能参与 LPC 生成的 PLA(2)酶。该酶在 B. anurum 唾液中的活性比其他研究过的半翅目昆虫高 5 倍,这表明它与这种昆虫的捕食习性密切相关。B. anurum 采用的是体外消化,这使其能够摄入比自身更大的猎物,包括小型脊椎动物如两栖动物和鱼类。因此,猎物在消化过程中的固定是必不可少的,我们在这里证明了 B. anurum 唾液和纯化的 LPC 具有麻痹斑马鱼的活性。这是第一个证据表明,溶血磷脂可能在猎物固定中发挥重要作用,除了有助于吸血之外,它可能是在这个动物群出现吸血之前很久就已经进化获得的。

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