Institute of Parasitology, Biology Centre, Czech Academy of Sciences, Ceske Budejovice (Budweis), Czechia.
Institute for Immunology, University Medical Center of the Johannes-Gutenberg University Mainz, Mainz, Germany.
Mol Ecol. 2022 Aug;31(15):4162-4175. doi: 10.1111/mec.16561. Epub 2022 Jun 19.
Few studies have examined tick proteomes, how they adapt to their environment, and their roles in the parasite-host interactions that drive tick infestation and pathogen transmission. Here we used a proteomics approach to screen for biologically and immunologically relevant proteins acting at the tick-host interface during tick feeding and, as proof of principle, measured host antibody responses to some of the discovered candidates. We used a label-free quantitative proteomic workflow to study salivary proteomes of (i) wild Ixodes ricinus ticks fed on different hosts, (ii) wild or laboratory ticks fed on the same host, and (iii) adult ticks cofed with nymphs. Our results reveal high and stable expression of several protease inhibitors and other tick-specific proteins under different feeding conditions. Most pathways functionally enriched in sialoproteomes were related to proteolysis, endopeptidase, and amine-binding activities. The generated catalogue of tick salivary proteins enabled the selection of six candidate secreted immunogenic peptides for rabbit immunizations, three of which induced strong and durable antigen-specific antibody responses in rabbits. Furthermore, rabbits exposed to ticks mounted immune responses against the candidate peptides/proteins, confirming their expression at the tick-vertebrate interface. Our approach provides insights into tick adaptation strategies to different feeding conditions and promising candidates for developing antitick vaccines or markers of exposure of vertebrate hosts to tick bites.
鲜有研究探究过蜱的蛋白质组、它们如何适应环境,以及它们在寄生虫-宿主相互作用中的作用,而这些相互作用会导致蜱的滋生和病原体的传播。在这里,我们采用蛋白质组学方法,在蜱类进食期间,筛选在蜱-宿主界面起作用的具有生物学和免疫学意义的相关蛋白,并以此为例,测量了宿主对一些已发现候选蛋白的抗体反应。我们采用无标记定量蛋白质组学工作流程,研究了(i)以不同宿主为食的野生蓖子硬蜱的唾液蛋白质组、(ii)以相同宿主为食的野生或实验室蜱的唾液蛋白质组,以及(iii)与若虫共同进食的成年蜱的唾液蛋白质组。我们的研究结果表明,在不同的进食条件下,几种蛋白酶抑制剂和其他蜱特异性蛋白表现出高且稳定的表达。唾液蛋白质组中功能丰富的大多数途径与蛋白水解、内肽酶和胺结合活性有关。生成的蜱唾液蛋白目录使我们能够选择六个候选分泌性免疫原性肽进行兔免疫,其中三个肽在兔子中诱导出强烈且持久的抗原特异性抗体反应。此外,暴露于蜱的兔子对候选肽/蛋白产生了免疫反应,证实了它们在蜱-脊椎动物界面的表达。我们的方法为蜱适应不同进食条件的策略提供了深入的了解,并为开发抗蜱疫苗或暴露于蜱叮咬的脊椎动物宿主的标记物提供了有前景的候选蛋白。