Liao Min, Boldbaatar Damdinsuren, Gong Haiyan, Huang Penglong, Umemiya Rika, Harnnoi Thasaneeya, Zhou Jinlin, Tanaka Tetsuya, Suzuki Hiroshi, Xuan Xuenan, Fujisaki Kozo
Laboratory of Emerging Infectious Diseases, Department of Frontier Veterinary Medicine, Faculty of Agriculture, Kagoshima University, Korimoto, Kagoshima 890 0065, Japan.
Insect Biochem Mol Biol. 2008 Mar;38(3):285-95. doi: 10.1016/j.ibmb.2007.11.006. Epub 2007 Nov 24.
Three protein disulfide isomerases from Haemaphysalis longicornis ticks (designated as HlPDI-1, HlPDI-2, and HlPDI-3) were previously identified. In order to further analyze their biological functions, the dsRNA of each HlPDI gene and one dsRNA combination of HlPDI-1/HlPDI-3 were separately injected into female ticks. Reduction of gene and protein expression of HlPDIs by RNA interference (RNAi) was demonstrated by real-time PCR, RT-PCR and Western blot analysis. In single dsRNA-injected groups, HlPDI-1 RNAi impacted tick blood feeding and oviposition, HlPDI-2 RNAi impacted tick viability and HlPDI-3 RNAi had no significant impact by itself. However, the injection of a combination of HlPDI-1/HlPDI-3 dsRNA had synergistic effects on tick viability. Furthermore, the midgut and cuticle were severely damaged in HlPDI-2 dsRNA-injected ticks and HlPDI-1/HlPDI-3 dsRNA-injected ticks, respectively, and disruption of HlPDI genes led to a significant reduction of disulfide bond-containing vitellogenin (Vg) expression in ticks. These results indicate that PDIs from H. longicornis are involved in blood feeding, viability and oocyte development, probably by mediating the formation of disulfide bond-containing proteins of the ticks and the formation of basement membrane and cuticle components such as extracellular matrix (ECM). This is the first report on the functional analysis of PDI family molecules as well as the interactions of PDI and other molecules in blood-feeding arthropods.
先前已鉴定出长角血蜱的三种蛋白质二硫键异构酶(分别命名为HlPDI-1、HlPDI-2和HlPDI-3)。为了进一步分析它们的生物学功能,将每个HlPDI基因的dsRNA以及HlPDI-1/HlPDI-3的一种dsRNA组合分别注射到雌蜱体内。通过实时PCR、RT-PCR和蛋白质印迹分析证实了RNA干扰(RNAi)可降低HlPDIs的基因和蛋白表达。在单dsRNA注射组中,HlPDI-1 RNAi影响蜱的吸血和产卵,HlPDI-2 RNAi影响蜱的生存能力,而HlPDI-3 RNAi本身没有显著影响。然而,注射HlPDI-1/HlPDI-3 dsRNA组合对蜱的生存能力有协同作用。此外,注射HlPDI-2 dsRNA的蜱和注射HlPDI-1/HlPDI-3 dsRNA的蜱的中肠和表皮分别受到严重损伤,HlPDI基因的破坏导致蜱中含二硫键的卵黄原蛋白(Vg)表达显著降低。这些结果表明,长角血蜱的PDIs可能通过介导蜱含二硫键蛋白质的形成以及基底膜和表皮成分(如细胞外基质(ECM))的形成,参与吸血、生存能力和卵母细胞发育。这是关于PDI家族分子功能分析以及吸血节肢动物中PDI与其他分子相互作用的首次报道。