Fogelgren Ben, Yang Shiming, Sharp Ian C, Huckstep Odaro J, Ma Wenbin, Somponpun S J, Carlson Edward C, Uyehara Catherine F T, Lozanoff Scott
Deptartment of Anatomy, Biochemistry, and Physiology, John A. Burns School of Medicine, University of Hawaii, Honolulu, HI, USA.
Am J Physiol Renal Physiol. 2009 May;296(5):F1166-78. doi: 10.1152/ajprenal.90550.2008. Epub 2009 Feb 4.
The Br/+ mutant mouse displays decreased embryological expression of the homeobox transcription factor Six2, resulting in hertitable renal hypoplasia. The purpose of this study was to characterize the renal physiological consequences of embryonic haploinsuffiency of Six2 by analyzing renal morphology and function in the adult Br heterozygous mutant. Adult Br/+ kidneys weighed 50% less than those from wild-type mice and displayed glomerulopathy. Stereological analysis of renal glomeruli showed that Br/+ kidneys had an average of 88% fewer glomeruli than +/+ kidneys, whereas individual glomeruli in Br/+ mice maintained an average volume increase of 180% compared with normal nephrons. Immunostaining revealed increased levels of endothelin-1 (ET-1), endothelin receptors A (ET(A)) and B (ET(B)), and Na-K-ATPase were present in the dilated renal tubules of mutant mice. Physiological features of chronic renal failure (CRF) including elevated mean arterial pressure, increased plasma creatinine, and dilute urine excretion were measured in Br/+ mutant mice. Electron microscopy of the Br/+ glomeruli revealed pathological alterations such as hypercellularity, extracellular matrix accumulation, and a thick irregular glomerular basement membrane. These results indicate that adult Br/+ mice suffer from CRF associated with reduced nephron number and renal hypoplasia, as well as glomerulopathy. Defects are associated with embryological deficiencies of Six2, suggesting that proper levels of this protein during nephrogenesis are critical for normal glomerular development and adult renal function.
Br/+突变小鼠的同源框转录因子Six2的胚胎学表达降低,导致遗传性肾发育不全。本研究的目的是通过分析成年Br杂合突变体的肾脏形态和功能,来表征Six2胚胎单倍剂量不足的肾脏生理后果。成年Br/+小鼠的肾脏重量比野生型小鼠的肾脏轻50%,并表现出肾小球病变。对肾肾小球的体视学分析表明,Br/+小鼠的肾脏肾小球数量平均比+/+小鼠少88%,而Br/+小鼠的单个肾小球与正常肾单位相比,平均体积增加了180%。免疫染色显示,突变小鼠扩张的肾小管中内皮素-1(ET-1)、内皮素受体A(ET(A))和B(ET(B))以及钠钾ATP酶的水平升高。在Br/+突变小鼠中测量了慢性肾衰竭(CRF)的生理特征,包括平均动脉压升高、血浆肌酐增加和尿液稀释排泄。Br/+肾小球的电子显微镜检查显示出病理改变,如细胞增多、细胞外基质积聚和肾小球基底膜增厚不规则。这些结果表明,成年Br/+小鼠患有与肾单位数量减少和肾发育不全以及肾小球病变相关的CRF。缺陷与Six2的胚胎学缺陷有关,表明在肾发生过程中该蛋白的适当水平对正常肾小球发育和成年肾功能至关重要。