首页> 外文期刊>Journal of Parasitology >NBHSWP11, A MICROSPORIDIA NOSEMA BOMBYCIS PROTEIN, LOCALIZING IN THE SPORE WALL AND MEMBRANES, REDUCES SPORE ADHERENCE TO HOST CELL BME
【24h】

NBHSWP11, A MICROSPORIDIA NOSEMA BOMBYCIS PROTEIN, LOCALIZING IN THE SPORE WALL AND MEMBRANES, REDUCES SPORE ADHERENCE TO HOST CELL BME

机译:NBHSWP11,一种微小孢子虫鼻息肉小球藻蛋白,位于孢子壁和膜中,可减少宿主细胞BME的粘附力

获取原文
获取原文并翻译 | 示例
           

摘要

Microsporidia are obligate intracellular parasites, and a derivative of fungi, which harbor a rigid spore wall to resist adverse environmental pressures. The spore wall protein, which is thought to be the first and direct protein interacting with the host cell, may play a key role in the process of microsporidia infection. In this study, we report a protein, NbHSWP11, with a dnaJ domain. The protein also has 6 heparin-binding motifs which are known to interact with extracellular glycosaminoglycans. Syntenic analysis indicated that gene loci of Nbhswp11 are conserved and syntenic between Nosema bombycis and Nosema ceranae. Phylogenetic tree analysis showed that Nbhswp11 clusters with fungal dnaJ proteins and has 98% identity with an N. bombycis dnaJ protein. Nbhswp11 was transcribed throughout the entire life stages, and gradually increased during 1-7 days, in a silkworm that was infected by N. bombycis, as determined by reverse-transcription PCR (RT-PCR). The recombinant protein NbHSWP11 (rSWP11-HIS) was obtained and purified using gene cloning and prokaryotic expression. Western blotting analysis displayed NbHSWP11 expressed in the total mature spore proteins and spore coat proteins. Indirect immunofluorescence assay revealed NbHSWP11 located at the spore wall of mature spores and the spore coats. Furthermore, immune electron microscopy showed that NbHSWP11 localized in the cytoplasm of the sporont. Within the developmental process of N. bombycis, a portion of NbHSWP11 is targeted to the spore wall of sporoblasts and mature spores. However, most of NbHSWP11 distributes on the membraneous structures of the sporoblast and mature spore. In addition, using a host cell binding assay, native protein NbHSWP11 in the supernatant of total soluble mature spore proteins is shown to bind to the host cell BmE surface. Finally, an antibody blocking assay showed that purified rabbit antibody of NbHSWP11 inhibits spore adherence and decreases the adherence rate of spores by 20% compared to untreated spores. Collectively, the present results suggest that NbHSWP11 is involved in host cell adherence in vitro. Therefore NbHSWP11, which has a dnaJ domain, may modulate protein assembly, disassembly, and translocation in N. bombycis.
机译:微孢子虫是专性的细胞内寄生虫,是真菌的衍生物,其具有坚硬的孢子壁以抵抗不利的环境压力。孢子壁蛋白被认为是与宿主细胞相互作用的第一个直接蛋白,它可能在微孢子虫感染过程中起关键作用。在这项研究中,我们报告了具有dnaJ结构域的蛋白质NbHSWP11。该蛋白质还具有6种肝素结合基序,已知可与细胞外糖胺聚糖相互作用。同义分析表明,Nbhswp11的基因位点是保守的,在Nosema bombycis和Nosema ceranae之间是同义的。系统发育树分析表明,Nbhswp11与真菌dnaJ蛋白成簇,与N. bombycis dnaJ蛋白具有98%的同一性。 Nbhswp11在整个生命周期中均被转录,并在1-7天之内逐渐增加,这是由反转录PCR(RT-PCR)确定的,感染了弹状猪笼草的家蚕。使用基因克隆和原核表达获得并纯化了重组蛋白NbHSWP11(rSWP11-HIS)。 Western印迹分析显示NbHSWP11在总成熟孢子蛋白和孢子外壳蛋白中表达。间接免疫荧光分析显示NbHSWP11位于成熟孢子壁和孢子被膜上。此外,免疫电子显微镜显示NbHSWP11定位在孢子的细胞质中。在孟菲斯猪笼草的发育过程中,NbHSWP11的一部分靶向孢子母细胞和成熟孢子的孢子壁。但是,大多数NbHSWP11分布在孢子母细胞和成熟孢子的膜结构上。另外,使用宿主细胞结合测定法,总可溶性成熟孢子蛋白上清液中的天然蛋白NbHSWP11显示与宿主细胞BmE表面结合。最后,抗体阻断试验表明,与未处理的孢子相比,纯化的NbHSWP11兔抗体抑制孢子粘附,并使孢子的粘附率降低20%。总体而言,目前的结果表明,NbHSWP11参与体外宿主细胞的粘附。因此,具有dnaJ结构域的NbHSWP11可能调节N. bombycis中的蛋白质装配,分解和易位。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号