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牛蜱,即 Rhipicephalus (Boophilus) microplus 中金属基质蛋白酶的表达谱分析、基因沉默和转录网络

Expression profiling, gene silencing and transcriptional networking of metzincin metalloproteases in the cattle tick, Rhipicephalus (Boophilus) microplus.

机构信息

Department of Biochemistry, Faculty of Natural and Agricultural Sciences, University of Pretoria, Pretoria, 0002, South Africa.

出版信息

Vet Parasitol. 2012 May 25;186(3-4):403-14. doi: 10.1016/j.vetpar.2011.11.026. Epub 2011 Nov 15.

Abstract

Tick proteins functioning in vital physiological processes such as blood meal uptake, digestion and reproduction are potential targets for anti-tick vaccines, since vaccination could inhibit these essential functions and ultimately affect tick survival. In this study we identified metzincin metalloproteases from Rhipicephalus microplus as potential vaccine candidates since they are implicated as essential to blood-cavity formation, bloodmeal digestion and reproduction in ixodid ticks. Eight transcripts encoding proteins that contain the characteristic metzincin zinc-binding motif HEXXHXXG/NXXH/D and a unique methionine containing "methionine-turn" were identified from native and in-house assembled R. microplus expressed sequence tag (EST) databases. These were representative of five reprolysin-like and three astacin-like metzincin metalloproteases. Reverse transcription-PCR analysis indicated that the reprolysins were most abundantly expressed in the salivary glands, whereas the astacins were most abundant in the midgut and ovaries. In vivo gene silencing was performed to assess a possible phenotype of these metalloproteases during adult female R. microplus blood feeding and reproduction. RNA interference (RNAi) against two of the reprolysins and one of the astacins significantly affected the average egg weight and oviposition rate. Evidently, this reverse genetic approach enabled the evaluation of the overall vital impact of tick proteins. Finally, integrated real time-PCR studies also revealed an extensive cross organ network between the R. microplus metzincin transcripts, supporting the use of a combinatorial metzincin-based anti- R. microplus vaccine.

摘要

在重要的生理过程中发挥作用的蜱蛋白,如吸血、消化和繁殖,是抗蜱疫苗的潜在靶标,因为疫苗接种可以抑制这些基本功能,最终影响蜱的生存。在这项研究中,我们鉴定了 Rhipicephalus microplus 的金属基质蛋白酶作为潜在的疫苗候选物,因为它们被认为对蜱的血腔形成、血餐消化和繁殖是必不可少的。从天然和内部组装的 R. microplus 表达序列标签 (EST) 数据库中鉴定出 8 种编码含有特征性金属基质蛋白酶锌结合基序 HEXXHXXG/NXXH/D 和独特的含蛋氨酸的“蛋氨酸-转弯”的蛋白质的转录本。这些转录本代表了 5 种类胰蛋白酶样和 3 种类星虫样金属基质蛋白酶。逆转录-PCR 分析表明,类胰蛋白酶在唾液腺中表达最丰富,而星虫样酶在中肠和卵巢中表达最丰富。在体内基因沉默实验中,评估了这些金属蛋白酶在成年雌性 R. microplus 吸血和繁殖过程中的可能表型。针对两种类胰蛋白酶和一种星虫样酶的 RNA 干扰 (RNAi) 显著影响了平均卵重和产卵率。显然,这种反向遗传学方法能够评估蜱蛋白对整体生命的重要影响。最后,综合实时 PCR 研究还揭示了 R. microplus 金属基质蛋白酶转录本之间广泛的交叉器官网络,支持使用基于组合金属基质蛋白酶的抗 R. microplus 疫苗。

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