Department of Vector Biology, Liverpool School of Tropical Medicine, Liverpool, L3 5QA, UK.
Ludger Ltd., Culham Science Centre, Oxfordshire, OX14 3EB, UK.
Sci Rep. 2020 Jul 31;10(1):12903. doi: 10.1038/s41598-020-69753-x.
During Leishmania transmission sand flies inoculate parasites and saliva into the skin of vertebrates. Saliva has anti-haemostatic and anti-inflammatory activities that evolved to facilitate bloodfeeding, but also modulate the host's immune responses. Sand fly salivary proteins have been extensively studied, but the nature and biological roles of protein-linked glycans remain overlooked. Here, we characterised the profile of N-glycans from the salivary glycoproteins of Lutzomyia longipalpis, vector of visceral leishmaniasis in the Americas. In silico predictions suggest half of Lu. longipalpis salivary proteins may be N-glycosylated. SDS-PAGE coupled to LC-MS analysis of sand fly saliva, before and after enzymatic deglycosylation, revealed several candidate glycoproteins. To determine the diversity of N-glycan structures in sand fly saliva, enzymatically released sugars were fluorescently tagged and analysed by HPLC, combined with highly sensitive LC-MS/MS, MALDI-TOF-MS, and exoglycosidase treatments. We found that the N-glycan composition of Lu. longipalpis saliva mostly consists of oligomannose sugars, with ManGlcNAc being the most abundant, and a few hybrid-type species. Interestingly, some glycans appear modified with a group of 144 Da, whose identity has yet to be confirmed. Our work presents the first detailed structural analysis of sand fly salivary glycans.
在利什曼原虫传播过程中,沙蝇将寄生虫和唾液接种到脊椎动物的皮肤中。唾液具有抗凝血和抗炎活性,这些活性有助于吸血,但也调节宿主的免疫反应。沙蝇唾液蛋白已被广泛研究,但蛋白结合糖的性质和生物学作用仍被忽视。在这里,我们对美洲内脏利什曼病的载体长角血蝉唾液糖蛋白中的 N-糖肽图谱进行了描述。计算机预测表明,Lu. longipalpis 唾液蛋白中有一半可能是 N-糖基化的。在进行 SDS-PAGE 结合 LC-MS 分析之前和之后,对唾液进行了酶解糖基化处理,结果揭示了几种候选糖蛋白。为了确定沙蝇唾液中 N-聚糖结构的多样性,用荧光标记酶解释放的糖,并通过 HPLC 进行分析,结合高灵敏度 LC-MS/MS、MALDI-TOF-MS 和外切糖苷酶处理。我们发现,Lu. longipalpis 唾液中的 N-聚糖组成主要由寡甘露糖组成,其中 ManGlcNAc 最为丰富,还有一些杂合型。有趣的是,一些聚糖似乎被一组 144 Da 的物质修饰,其身份尚未得到证实。我们的工作首次对沙蝇唾液糖进行了详细的结构分析。