Department of Internal Medicine, Division of Nephrology, University of Texas Southwestern Medical Center, Dallas, USA.
Am J Physiol Cell Physiol. 2012 Oct 15;303(8):C883-94. doi: 10.1152/ajpcell.00201.2012. Epub 2012 Aug 22.
Epithelial ion transport is essential to renal homeostatic function, and it is dysregulated in several diseases, such as hypertension. An understanding of the insect renal (Malpighian) tubule yields insights into conserved epithelial ion transport processes in higher organisms and also has implications for the control of insect infectious disease vectors. Here, we examine the role of the Na(+)-K(+)-2Cl(-) (NKCC) cotransporter Ncc69 in Drosophila tubule function. Ncc69 mutant tubules have decreased rates of fluid secretion and K(+) flux, and these phenotypes were rescued by expression of wild-type Ncc69 in the principal cells of the tubule. Na(+) flux was unaltered in Ncc69 mutants, suggesting Na(+) recycling across the basolateral membrane. In unstimulated tubules, the principal role of the Na(+)-K(+)-ATPase is to generate a favorable electrochemical gradient for Ncc69 activity: while the Na(+)-K(+)-ATPase inhibitor ouabain decreased K(+) flux in wild-type tubules, it had no effect in Ncc69 mutant tubules. However, in the presence of cAMP, which stimulates diuresis, additional Na(+)-K(+)-ATPase-dependent K(+) transport pathways are recruited. In studying the effects of capa-1 on wild-type and Ncc69 mutant tubules, we found a novel antidiuretic role for this hormone that is dependent on intact Ncc69, as it was abolished in Ncc69 mutant tubules. Thus, Ncc69 plays an important role in transepithelial ion and fluid transport in the fly renal tubule and is a target for regulation in antidiuretic states.
上皮离子转运对于肾脏的稳态功能至关重要,它在多种疾病中失调,如高血压。对昆虫肾(马氏管)小管的理解可以深入了解高等生物中保守的上皮离子转运过程,也对控制昆虫传染性疾病媒介具有重要意义。在这里,我们研究了 Na(+)-K(+)-2Cl(-)(NKCC)共转运蛋白 Ncc69 在果蝇小管功能中的作用。Ncc69 突变体小管的分泌液和 K(+)通量降低,这些表型可以通过在小管的主细胞中表达野生型 Ncc69 来挽救。Ncc69 突变体中的 Na(+)通量没有改变,这表明 Na(+)在基底外侧膜上进行了回收。在未受刺激的小管中,Na(+)-K(+)-ATPase 的主要作用是为 Ncc69 活性产生有利的电化学梯度:虽然 Na(+)-K(+)-ATPase 抑制剂哇巴因降低了野生型小管中的 K(+)通量,但在 Ncc69 突变体小管中没有影响。然而,在 cAMP 的存在下,它刺激利尿,会募集额外的 Na(+)-K(+)-ATPase 依赖性 K(+)转运途径。在研究 capa-1 对野生型和 Ncc69 突变体小管的影响时,我们发现这种激素具有一种新的抗利尿作用,它依赖于完整的 Ncc69,因为它在 Ncc69 突变体小管中被废除。因此,Ncc69 在果蝇肾小管的跨上皮离子和液体转运中起着重要作用,是抗利尿状态下的调节靶点。