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The putative Na+/Cl−-dependent neurotransmitter/osmolyte transporter inebriated in the Drosophila hindgut is essential for the maintenance of systemic water homeostasis

机译:果蝇后肠中沉溺的Na + / Cl-依赖性神经递质/渗透压转运蛋白对于维持全身水体内稳态至关重要

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摘要

Most organisms are able to maintain systemic water homeostasis over a wide range of external or dietary osmolarities. The excretory system, composed of the kidneys in mammals and the Malpighian tubules and hindgut in insects, can increase water conservation and absorption to maintain systemic water homeostasis, which enables organisms to tolerate external hypertonicity or desiccation. However, the mechanisms underlying the maintenance of systemic water homeostasis by the excretory system have not been fully characterized. In the present study, we found that the putative Na+/Cl-dependent neurotransmitter/osmolyte transporter inebriated (ine) is expressed in the basolateral membrane of anterior hindgut epithelial cells. This was confirmed by comparison with a known basolateral localized protein, the α subunit of Na+-K+ ATPase (ATPα). Under external hypertonicity, loss of ine in the hindgut epithelium results in severe dehydration without damage to the hindgut epithelial cells, implicating a physiological failure of water conservation/absorption. We also found that hindgut expression of ine is required for water conservation under desiccating conditions. Importantly, specific expression of ine in the hindgut epithelium can completely restore disrupted systemic water homeostasis in ine mutants under both conditions. Therefore, ine in the Drosophila hindgut is essential for the maintenance of systemic water homeostasis.
机译:大多数生物能够在广泛的外部或饮食渗透压下维持全身水的体内平衡。排泄系统由哺乳动物的肾脏,马氏小管和昆虫的后肠组成,可以增加节水和吸收,以维持全身水的体内平衡,使生物体能够耐受外部的高渗性或干燥性。然而,由排泄系统维持全身水体内稳态的机制尚未得到充分表征。在本研究中,我们发现被推测为Na + / Cl -依赖的神经递质/渗透液转运蛋白(ine)在后肠上皮细胞的基底外侧膜中表达。通过与已知的基底外侧定位蛋白Na + -K + ATPase(ATPα)的α亚基进行比较,证实了这一点。在外部高渗下,后肠上皮中的ine缺失会导致严重的脱水,而不会损害后肠上皮细胞,这意味着水保存/吸收的生理失败。我们还发现在干燥条件下节水需要ine后肠表达。重要的是,在两种情况下,ine在后肠上皮中的特异性表达可以完全恢复ine突变体中破坏的系统水体内稳态。因此,果蝇后肠中的ine对于维持全身水体内平衡至关重要。

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