首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Hypotonicity Stimulates Potassium Flux through the WNK-SPAK/OSR1 Kinase Cascade and the Ncc69 Sodium-Potassium-2-Chloride Cotransporter in the Drosophila Renal Tubule
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Hypotonicity Stimulates Potassium Flux through the WNK-SPAK/OSR1 Kinase Cascade and the Ncc69 Sodium-Potassium-2-Chloride Cotransporter in the Drosophila Renal Tubule

机译:低渗性通过果蝇肾小管中的WNK-SPAK / OSR1激酶级联反应和Ncc69钾-2-氯共转运蛋白刺激钾通量。

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摘要

The ability to osmoregulate is fundamental to life. Adult Drosophila melanogaster maintain hemolymph osmolarity within a narrow range. Osmolarity modulates transepithelial ion and water flux in the Malpighian (renal) tubules of the fly, which are in direct contact with hemolymph in vivo, but the mechanisms causing increased transepithelial flux in response to hypotonicity are unknown. Fly renal tubules secrete a KCl-rich fluid. We have previously demonstrated a requirement for Ncc69, the fly sodium-potassium-2-chloride cotransporter (NKCC), in tubule K+ secretion. Mammalian NKCCs are regulated by a kinase cascade consisting of the with-no-lysine (WNK) and Ste20-related proline/alanine-rich (SPAK)/oxidative stress response (OSR1) kinases. Here, we show that decreasing Drosophila WNK activity causes a reduction in K+ flux. Similarly, knocking down the SPAK/OSR1 homolog fray also decreases K+ flux. We demonstrate that a hierarchical WNK-Fray signaling cascade regulates K+ flux through Ncc69, because (i) a constitutively active Fray mutant rescues the wnk knockdown phenotype, (ii) Fray directly phosphorylates Ncc69 in vitro, and (iii) the effect of wnk and fray knockdown is abolished in Ncc69 mutants. The stimulatory effect of hypotonicity on K+ flux is absent in wnk, fray, or Ncc69 mutant tubules, suggesting that the Drosophila WNK-SPAK/OSR1-NKCC cascade is an essential molecular pathway for osmoregulation, through its effect on transepithelial ion flux and fluid generation by the renal tubule.
机译:渗透能力是生命的基础。成年果蝇黑腹果蝇维持较窄范围内的血淋巴渗透压浓度。渗透压调节果蝇的Malpighian(肾)小管中的跨上皮离子和水通量,这些小管在体内与血淋巴直接接触,但是引起对低渗性反应的跨上皮通量增加的机制尚不清楚。飞肾小管分泌富含KCl的液体。先前我们已经证明了小管K + 分泌物中需要Ncc69,即二氯化钠-钾钾共转运蛋白(NKCC)。哺乳动物NKCC由无赖氨酸(WNK)和与Ste20相关的脯氨酸/富含丙氨酸的(SPAK)/氧化应激反应(OSR1)激酶组成的激酶级联调节。在这里,我们表明果蝇WNK活性的降低导致K + 通量的降低。同样,敲除SPAK / OSR1同系物磨损也会降低K + 通量。我们证明了分层的WNK-Fray信号级联通过Ncc69调节K + 通量,因为(i)具有组成型活性的Fray突变体拯救了wnk击倒表型,(ii)Fray在体外直接磷酸化Ncc69,并且(iii)在Ncc69突变体中消除了wnk和fray敲低的作用。在wnk,fray或Ncc69突变小管中不存在低渗对K + 通量的刺激作用,这表明果蝇WNK-SPAK / OSR1-NKCC级联是渗透调节的重要分子途径,通过其对肾小管经上皮离子通量和液体生成的影响。

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