School of Science Education, Nara University of Education, Nara, 630-8528, Japan.
Department of Biological Science and Chemistry, Faculty of Science, Yamaguchi University, Yamaguchi, Japan.
J Eukaryot Microbiol. 2021 May;68(3):e12843. doi: 10.1111/jeu.12843. Epub 2021 Feb 26.
In a ciliate Paramecium, the presence of water channels on the membrane of contractile vacuole has long been predicted by both morphological and physiological data, however, to date either the biochemical or the molecular biological data have not been provided. In the present study, to examine the presence of aquaporin in Paramecium, we carried out RT-PCR with degenerated primers designed based on the ParameciumDB, and an aquaporin cDNA (aquaporin 1, aqp1) with a full-length ORF encoding 251 amino acids was obtained from Paramecium multimicronucleatum by using RACE. The deduced amino acid sequence of AQP1 had NPA-NPG motifs, and the prediction of protein secondary structure by CNR5000 and hydropathy plot showed the presence of six putative transmembrane domains and five connecting loops. Phylogenetic analysis results showed that the amino acid sequence of AQP1 was close to that of the Super-aquaporin group. The AQP1-GFP fusion protein clearly demonstrated the subcellular localization of AQP1 on the contractile vacuole complex, except for the decorated spongiome membrane. The functional analyses of aqp1 were done by RNA interference-based gene silencing, using an established feeding method. The aqp1 was found to be crucial for the total fluid output of the cell, the function of contractile vacuole membranes.
在纤毛虫 Paramecium 中,收缩泡膜上存在水通道,这一观点长期以来一直受到形态学和生理学数据的预测,但迄今为止,无论是生化数据还是分子生物学数据都尚未提供。在本研究中,为了研究 Paramecium 中是否存在水通道蛋白,我们使用基于 ParameciumDB 设计的简并引物进行了 RT-PCR,并用 RACE 从 Paramecium multimicronucleatum 中获得了全长 ORF 编码 251 个氨基酸的水通道蛋白 cDNA(水通道蛋白 1,aqp1)。AQP1 的推导氨基酸序列具有 NPA-NPG 基序,通过 CNR5000 和疏水性图预测的蛋白质二级结构显示存在六个推定的跨膜结构域和五个连接环。系统发育分析结果表明,AQP1 的氨基酸序列与 Super-aquaporin 组的氨基酸序列接近。AQP1-GFP 融合蛋白清楚地表明 AQP1 在收缩泡复合体上的亚细胞定位,除了装饰有海绵体膜。通过建立的喂养方法,使用 RNA 干扰基因沉默对 aqp1 的功能进行了分析。发现 aqp1 对细胞的总液体输出和收缩泡膜的功能至关重要。