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Suppression of mRNAs encoding CD63 family tetraspanins from the carcinogenic liver fluke Opisthorchis viverrini results in distinct tegument phenotypes

机译:抑制来自致癌性肝吸虫Ovidhorchis viverrini的CD63家族四跨膜蛋白的mRNA导致不同的表皮表型

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摘要

The liver fluke Opisthorchis viverrini infects 10 million people in Southeast Asia and causes cholangiocarcinoma (CCA). Fluke secreted and tegumental proteins contribute to the generation of a tumorigenic environment and are targets for drug and vaccine-based control measures. Herein, we identified two tetraspanins belonging to the CD63 family (Ov-TSP-2 and Ov-TSP-3) that are abundantly expressed in the tegument proteome of O. viverrini. Ov-tsp-2 and tsp-3 transcripts were detected in all developmental stages of O. viverrini. Protein fragments corresponding to the large extracellular loop (LEL) of each TSP were produced in recombinant form and antibodies were raised in rabbits. Ov-TSP-2 and TSP-3 were detected in whole worm extracts and excretory/secretory products of O. viverrini and reacted with sera from infected hamsters and humans. Antibodies confirmed localization of Ov-TSP-2 and TSP-3 to the adult fluke tegument. Using RNA interference, Ov-tsp-2 and tsp-3 mRNA expression was significantly suppressed for up to 21 days in vitro. Ultrastructural observation of tsp-2 and tsp-3 dsRNA-treated flukes resulted in phenotypes with increased tegument thickness, increased vacuolation (tsp-2) and reduced electron density (tsp-3). These studies confirm the importance of CD63 family tegument tetraspanins in parasitic flukes and support efforts to target these proteins for vaccine development.
机译:肝吸虫Viistrichis viverrini感染东南亚一千万人,并引起胆管癌(CCA)。 Fluke分泌的蛋白质和外皮蛋白有助于形成致瘤环境,并且是基于药物和疫苗的控制措施的目标。在这里,我们确定了两个属于CD63家族的四跨膜蛋白(Ov-TSP-2和Ov-TSP-3),它​​们在O. viverrini的被膜蛋白质组中大量表达。在O. viverrini的所有发育阶段均检测到Ov-tsp-2和tsp-3转录本。对应于每个TSP的大细胞外环(LEL)的蛋白质片段以重组形式产生,并在兔中产生抗体。 Ov-TSP-2和TSP-3在维氏曲霉的全蠕虫提取物和排泄/分泌产物中检测到,并与感染的仓鼠和人类的血清反应。抗体证实Ov-TSP-2和TSP-3定位于成人吸虫皮。使用RNA干扰,Ov-tsp-2和tsp-3 mRNA表达在体外长达21天被显着抑制。用tsp-2和tsp-3 dsRNA处理的吸虫的超微结构观察结果表明,表型的表皮厚度增加,空泡增加(tsp-2)和电子密度降低( tsp-3 )。这些研究证实了CD63家族被膜四跨膜蛋白在寄生吸虫中的重要性,并支持针对这些蛋白进行疫苗开发的努力。

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