Hatini V, Huh S O, Herzlinger D, Soares V C, Lai E
Cell Biology Program and Division of Endocrinology, Cornell University Graduate School of Medical Sciences, Memorial Sloan-Kettering Cancer Center, New York, New York 10021, USA.
Genes Dev. 1996 Jun 15;10(12):1467-78. doi: 10.1101/gad.10.12.1467.
Metanephric mesenchyme gives rise to both the epithelial cells of the nephron and the stromal cells of the mature kidney. The function of the stroma. in kidney morphogenesis is poorly understood. We have generated mice with a null mutation in the Winged Helix (WH) transcription factor BF-2 to examine its function during development. BF-2 expression within the developing kidney is restricted to the stromal cell lineage. Homozygotes die within the first 24 hr after birth with abnormal kidneys. Mutant kidneys are small, fused longitudinally, and rotated 90 degrees ventrally. Histological examination reveals a smaller collecting system, numerous large condensations of mesenchyme, and a decrease in the number of nephrons. Using molecular markers we show that induction and condensation of the nephrogenic mesenchyme occurs normally in mutant. The disruption of BF-2 reduces the rate of differentiation of the condensed mesenchyme into tubular epithelium, as well as the rate of growth and branching of the ureter and collecting system. Our findings demonstrate that BF-2 and stromal cells have essential functions during kidney morphogenesis. Furthermore, they suggest that BF-2 controls the production, by the stroma, of signals or factors that are required for the normal transition of induced mesenchyme into tubular epithelium and full growth and branching of the collecting system.
后肾间充质可产生肾单位的上皮细胞和成熟肾脏的基质细胞。基质在肾脏形态发生中的功能尚不清楚。我们构建了翼状螺旋(WH)转录因子BF-2基因敲除突变小鼠,以研究其在发育过程中的功能。发育中的肾脏内BF-2的表达仅限于基质细胞谱系。纯合子在出生后24小时内死亡,肾脏异常。突变的肾脏较小,纵向融合,并向腹侧旋转90度。组织学检查显示集合系统较小,有大量间充质大凝聚物,肾单位数量减少。使用分子标记,我们表明突变体中肾发生间充质的诱导和凝聚正常发生。BF-2的破坏降低了凝聚间充质分化为肾小管上皮的速率,以及输尿管和集合系统的生长和分支速率。我们的研究结果表明,BF-2和基质细胞在肾脏形态发生过程中具有重要功能。此外,它们表明BF-2控制基质产生诱导间充质正常转变为肾小管上皮以及集合系统完全生长和分支所需的信号或因子。