Kim Hye-Young, Verlander Jill W, Bishop Jesse M, Cain Brian D, Han Ki-Hwan, Igarashi Peter, Lee Hyun-Wook, Handlogten Mary E, Weiner I David
Division of Nephrology, Hypertension, and Transplantation, University of Florida College of Medicine, Gainesville, Florida 32610, USA.
Am J Physiol Renal Physiol. 2009 Mar;296(3):F543-55. doi: 10.1152/ajprenal.90637.2008. Epub 2009 Jan 7.
Ammonia metabolism and transport are critical for acid-base homeostasis. The ammonia transporter family member Rh C glycoprotein (Rhcg) is expressed in distal renal tubular segments, and its expression is regulated in parallel with renal ammonia metabolism. However, there are inconsistencies in its reported subcellular distribution, with both apical and basolateral Rhcg reported in rat and human kidney and only apical expression in mouse kidney. Because the membrane location of Rhcg is critical for understanding its physiological role, we reassessed mouse Rhcg localization using refined immunolocalization methods. Two antibodies directed against different Rhcg-specific epitopes identified both apical and basolateral Rhcg immunolabel in mouse kidney. Immunogold electron microscopy both confirmed basolateral plasma membrane Rhcg expression and showed that apical immunolabel represented expression in both the apical plasma membrane and in subapical cytoplasmic vesicles. Immunoblots and Northern blots identified similar bands in Balb/c and C57BL/6 kidneys, suggesting basolateral Rhcg may result from alternative trafficking. Basolateral Rhcg intensity was strain dependent, with less basolateral Rhcg expression in the Balb/c mouse compared with the C57BL/6 mouse. In mice with collecting duct-specific Rhcg gene deletion, generated using Cre-loxP techniques, neither apical nor basolateral Rhcg immunolabel was identified in the collecting duct, confirming that basolateral Rhcg was the product of the same gene product as apical Rhcg. Although basolateral Rhcg expression differed between C57BL/6 and Balb/c mice, Rh B glycoprotein, which is exclusively basolateral, was expressed at similar levels in the two strains. We conclude that Rhcg is present in both the apical and basolateral plasma membrane in the mouse kidney, where it is likely to contribute to renal ammonia metabolism.
氨代谢和转运对于酸碱平衡至关重要。氨转运体家族成员Rh C糖蛋白(Rhcg)在远端肾小管节段表达,其表达与肾脏氨代谢平行调节。然而,关于其亚细胞分布的报道存在不一致之处,在大鼠和人类肾脏中均报道有顶端和基底外侧的Rhcg,而在小鼠肾脏中仅报道有顶端表达。由于Rhcg的膜定位对于理解其生理作用至关重要,我们使用改进的免疫定位方法重新评估了小鼠Rhcg的定位。两种针对不同Rhcg特异性表位的抗体在小鼠肾脏中均鉴定出顶端和基底外侧的Rhcg免疫标记。免疫金电子显微镜既证实了基底外侧质膜上Rhcg的表达,又表明顶端免疫标记代表顶端质膜和顶端下细胞质囊泡中的表达。免疫印迹和Northern印迹在Balb/c和C57BL/6小鼠肾脏中鉴定出相似的条带,提示基底外侧Rhcg可能是由不同的转运途径导致的。基底外侧Rhcg的强度具有品系依赖性,与C57BL/6小鼠相比,Balb/c小鼠基底外侧Rhcg的表达较少。在使用Cre-loxP技术构建的集合管特异性Rhcg基因缺失小鼠中,在集合管中未鉴定出顶端或基底外侧的Rhcg免疫标记,证实基底外侧Rhcg与顶端Rhcg是同一基因产物。尽管C57BL/6和Balb/c小鼠之间基底外侧Rhcg的表达存在差异,但仅位于基底外侧的Rh B糖蛋白在这两个品系中的表达水平相似。我们得出结论,Rhcg存在于小鼠肾脏的顶端和基底外侧质膜中,可能参与肾脏氨代谢。