Narlis Melina, Grote David, Gaitan Yaned, Boualia Sami K, Bouchard Maxime
McGill Cancer Centre and Biochemistry Department, McGill University, 3655 Promenade Sir-William-Osler, Montreal, Quebec H3G 1Y6, Canada.
J Am Soc Nephrol. 2007 Apr;18(4):1121-9. doi: 10.1681/ASN.2006070739. Epub 2007 Feb 21.
Pax genes are important regulators of kidney development. In the mouse, homozygous Pax2 inactivation results in renal agenesis, a phenotype that has largely precluded the analysis of Pax gene function during metanephric kidney development. To address this later function, kidney development was analyzed in embryos that were compound heterozygous for Pax2 and for Pax8, a closely related member of the Pax gene family. Both genes are coexpressed in differentiating nephrons and collecting ducts. At the morphological level, Pax2(+/-)Pax8(+/-) metanephric kidneys are severely hypodysplastic and characterized by a reduction in ureter tips and nephron number in comparison with wild-type or Pax2(+/-) kidneys. In developing nephrons, the molecular analysis of Pax2(+/-)Pax8(+/-) kidneys reveals a strong reduction in the expression levels of Lim1, a key regulator of nephron differentiation, accompanied by an increase in apoptosis. At a more mature stage, the reduction of Pax2/8 gene dosage severely affects distal tubule formation, revealing a role for Pax genes in the differentiation of specific nephron segments. At the ureter tips, the expression of Wnt11, a target of glial cell-derived neurotrophic factor-Ret signaling, is significantly reduced, whereas the expression levels of Ret and GDNF remain normal. Together, these results demonstrate a crucial role for Pax2 and Pax8 in nephron differentiation and branching morphogenesis of the metanephros.
Pax基因是肾脏发育的重要调节因子。在小鼠中,Pax2基因纯合失活会导致肾缺如,这种表型在很大程度上阻碍了对后肾发育过程中Pax基因功能的分析。为了研究这一后期功能,对Pax2和Pax8(Pax基因家族中密切相关的成员)复合杂合的胚胎的肾脏发育进行了分析。这两个基因在分化的肾单位和集合管中共同表达。在形态学水平上,与野生型或Pax2(+/-)肾脏相比,Pax2(+/-)Pax8(+/-)后肾严重发育不全,其特征是输尿管芽尖和肾单位数量减少。在发育中的肾单位中,对Pax2(+/-)Pax8(+/-)肾脏的分子分析显示,肾单位分化的关键调节因子Lim1的表达水平大幅降低,同时细胞凋亡增加。在更成熟的阶段,Pax2/8基因剂量的减少严重影响远曲小管的形成,揭示了Pax基因在特定肾单位节段分化中的作用。在输尿管芽尖,胶质细胞源性神经营养因子-Ret信号的靶标Wnt11的表达显著降低,而Ret和GDNF的表达水平保持正常。总之,这些结果证明了Pax2和Pax8在后肾肾单位分化和分支形态发生中起关键作用。