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Characterization of Leishmania donovani Aquaporins Shows Presence of Subcellular Aquaporins Similar to Tonoplast Intrinsic Proteins of Plants

机译:Leishmania donovani Aquaporins的表征显示存在类似于植物液泡膜内在蛋白的亚细胞水​​通道蛋白

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摘要

Leishmania donovani, a protozoan parasite, resides in the macrophages of the mammalian host. The aquaporin family of proteins form important components of the parasite-host interface. The parasite-host interface could be a potential target for chemotherapy. Analysis of L. major and L. infantum genomes showed the presence of five aquaporins (AQPs) annotated as AQP9 (230aa), AQP putative (294aa), AQP-like protein (279aa), AQP1 (314aa) and AQP-like protein (596aa). We report here the structural modeling, localization and functional characterization of the AQPs from L. donovani. LdAQP1, LdAQP9, LdAQP2860 and LdAQP2870 have the canonical NPA-NPA motifs, whereas LdAQP putative has a non-canonical NPM-NPA motif. In the carboxyl terminal to the second NPA box of all AQPs except AQP1, a valine/alanine residue was found instead of the arginine. In that respect these four AQPs are similar to tonoplast intrinsic proteins in plants, which are localized to intracellular organelles. Confocal microscopy of L. donovani expressing GFP-tagged AQPs showed an intracellular localization of LdAQP9 and LdAQP2870. Real-time PCR assays showed expression of all aquaporins except LdAQP2860, whose level was undetectable. Three-dimensional homology modeling of the AQPs showed that LdAQP1 structure bears greater topological similarity to the aquaglyceroporin than to aquaporin of E. coli. The pore of LdAQP1 was very different from the rest in shape and size. The cavity of LdAQP2860 was highly irregular and undefined in geometry. For functional characterization, four AQP proteins were heterologously expressed in yeast. In the fps1Δ yeast cells, which lacked the key aquaglyceroporin, LdAQP1 alone displayed an osmosensitive phenotype indicating glycerol transport activity. However, expression of LdAQP1 and LdAQP putative in a yeast gpd1Δ strain, deleted for glycerol production, conferred osmosensitive phenotype indicating water transport activity or aquaporin function. Our analysis for the first time shows the presence of subcellular aquaporins and provides structural and functional characterization of aquaporins in Leishmania donovani.
机译:利什曼原虫donovani,一种原生动物寄生虫,位于哺乳动物宿主的巨噬细胞中。水通道蛋白家族蛋白形成寄生虫-宿主界面的重要组成部分。寄生虫-宿主界面可能是化学疗法的潜在目标。对大乳酸杆菌和婴儿乳酸杆菌基因组的分析显示,存在5种水通道蛋白(AQP),分别标注为AQP9(230aa),AQP推定(294aa),AQP类蛋白(279aa),AQP1(314aa)和AQP类蛋白( 596aa)。我们在这里报告了来自L. donovani的AQP的结构建模,定位和功能表征。 LdAQP1,LdAQP9,LdAQP2860和LdAQP2870具有规范的NPA-NPA主题,而LdAQP推定的具有非规范的NPM-NPA主题。在除AQP1以外的所有AQP的第二个NPA盒的羧基末端,发现有缬氨酸/丙氨酸残基而不是精氨酸。在这方面,这四个AQP与植物中的液泡膜内在蛋白相似,它们位于细胞内的细胞器中。表达GFP标记的AQP的多诺氏乳杆菌的共聚焦显微镜观察显示LdAQP9和LdAQP2870在细胞内定位。实时PCR分析显示除LdAQP2860以外的所有水通道蛋白的表达,LdAQP2860的水平无法检测。 AQP的三维同源性建模表明,LdAQP1结构与大肠杆菌的水甘油糖蛋白的拓扑相似性更高。 LdAQP1的孔在形状和大小上与其余孔非常不同。 LdAQP2860的空腔高度不规则,几何形状不确定。为了进行功能表征,四种AQP蛋白在酵母中异源表达。在缺少关键的水甘油糖蛋白的fps1Δ酵母细胞中,仅LdAQP1表现出渗透敏感性表型,表明甘油的转运活性。但是,LdAQP1和LdAQP在酵母gpd1Δ菌株中的表达(由于甘油的产生而缺失)赋予了渗透敏感性表型,表明水转运活性或水通道蛋白功能。我们的分析首次显示了亚细胞水通道蛋白的存在,并提供了利什曼原虫中水通道蛋白的结构和功能表征。

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