Institut de Biologia Evolutiva (CSIC-UPF) and LINC-Global, Passeig Maryítim de la Barceloneta 37-49, 08003 Barcelona, Spain.
J Exp Biol. 2011 Nov 1;214(Pt 21):3630-8. doi: 10.1242/jeb.057406.
Aquaporins (AQPs) are membrane proteins that form water channels, allowing rapid movement of water across cell membranes. AQPs have been reported in species of all life kingdoms and in almost all tissues, but little is known about them in insects. Our purpose was to explore the occurrence of AQPs in the ovary of the phylogenetically basal insect Blattella germanica (L.) and to study their possible role in fluid homeostasis during oogenesis. We isolated an ovarian AQP from B. germanica (BgAQP) that has a deduced amino acid sequence showing six potential transmembrane domains, two NPA motifs and an ar/R constriction region, which are typical features of the AQP family. Phylogenetic analyses indicated that BgAQP belongs to the PRIP group of insect AQPs, previously suggested to be water specific. However, ectopic expression of BgAQP in Xenopus laevis oocytes demonstrated that this AQP transports water and modest amounts of urea, but not glycerol, which suggests that the PRIP group of insect AQPs may have heterogeneous solute preferences. BgAQP was shown to be highly expressed in the ovary, followed by the fat body and muscle tissues, but water stress did not significantly modify the ovarian expression levels. RNA interference (RNAi) reduced BgAQP mRNA levels in the ovary but the oocytes developed normally. The absence of an apparent ovarian phenotype after BgAQP RNAi suggests that other functionally redundant AQPs that were not silenced in our experiments might exist in the ovary of B. germanica.
水通道蛋白(AQPs)是形成水通道的膜蛋白,允许水分子快速穿过细胞膜。AQPs 已在所有生命王国的物种和几乎所有组织中被报道,但在昆虫中对它们的了解甚少。我们的目的是探索水通道蛋白在亲缘关系基础昆虫德国小蠊(Blattella germanica)卵巢中的存在,并研究它们在卵子发生过程中对体液平衡的可能作用。我们从德国小蠊中分离出一种卵巢水通道蛋白(BgAQP),其推导的氨基酸序列显示出六个潜在的跨膜结构域、两个 NPA 基序和一个 ar/R 收缩区,这是 AQP 家族的典型特征。系统发育分析表明,BgAQP 属于昆虫 AQP 的 PRIP 组,先前被认为是特异性水通道蛋白。然而,BgAQP 在非洲爪蟾卵母细胞中的异位表达表明,这种 AQP 既能运输水,也能适度运输尿素,但不能运输甘油,这表明昆虫 AQP 的 PRIP 组可能具有不同的溶质偏好。BgAQP 在卵巢中高度表达,其次是脂肪体和肌肉组织,但水胁迫并没有显著改变卵巢中的表达水平。RNA 干扰(RNAi)降低了卵巢中的 BgAQP mRNA 水平,但卵母细胞发育正常。在 BgAQP RNAi 后没有出现明显的卵巢表型表明,在我们的实验中没有被沉默的其他功能冗余的 AQPs 可能存在于德国小蠊的卵巢中。