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Differential Expression and Localization of Branchial AQP1 and AQP3 in Japanese Medaka (Oryzias latipes)

机译:鳃AQP1和日本Medaka(Oryzias LaTipes)的差异表达和定位

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摘要

Aquaporins (AQPs) facilitate transmembrane water and solute transport, and in addition to contributing to transepithelial water transport, they safeguard cell volume homeostasis. This study examined the expression and localization of AQP1 and AQP3 in the gills of Japanese medaka (Oryzias latipes) in response to osmotic challenges and osmoregulatory hormones, cortisol, and prolactin (PRL). AQP3 mRNA was inversely regulated in response to salinity with high levels in ion-poor water (IPW), intermediate levels in freshwater (FW), and low levels in seawater (SW). AQP3 protein levels decreased upon SW acclimation. By comparison, AQP1 expression was unaffected by salinity. In ex vivo gill incubation experiments, AQP3 mRNA was stimulated by PRL in a time- and dose-dependent manner but was unaffected by cortisol. In contrast, AQP1 was unaffected by both PRL and cortisol. Confocal microscopy revealed that AQP3 was abundant in the periphery of gill filament epithelial cells and co-localized at low intensity with Na+,K+-ATPase in ionocytes. AQP1 was present at a very low intensity in most filament epithelial cells and red blood cells. No epithelial cells in the gill lamellae showed immunoreactivity to AQP3 or AQP1. We suggest that both AQPs contribute to cellular volume regulation in the gill epithelium and that AQP3 is particularly important under hypo-osmotic conditions, while expression of AQP1 is constitutive.
机译:Aquaporins(AQPS)促进跨膜水和溶质转运,除了有助于Transepithelial水运输,他们保护细胞体积稳定性。本研究审查了AQP1和AQP3在日本Medaka(Oryzias LaTipes)鳃中的表达和定位,以应对渗透挑战和Osmoregulatory激素,皮质醇和催乳素(PRL)。 AQP3 mRNA在响应于离子差的水(IPW)中具有高水平的盐度,淡水(FW)中的中间水平以及海水(SW)的低水平的盐度反向调节。 SW适应时AQP3蛋白水平降低。相比之下,AQP1表达不受盐度影响。在exVivo Gill孵育实验中,PRL以时间和剂量依赖性方式刺激AQP3 mRNA,但不受皮质醇的影响。相比之下,AQP1不受PRL和皮质醇的影响。共聚焦显微镜显示,AQP3在鳃长丝上皮细胞的周边中丰富,并在离子细胞中以低强度与Na +,K + -ATP酶共定。在大多数长丝上皮细胞和红细胞中,AQP1以非常低的强度存在。鳃薄片中没有上皮细胞显示出对AQP3或AQP1的免疫反应性。我们建议,两种AQP都有助于鳃上皮细胞体积调节,并且AQP3在渗透条件下尤为重要,而AQP1的表达是本构体的。

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