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Foxc1和Foxc2双杂合小鼠的肾脏和骨骼表型特征

Characterization of Kidney and Skeleton Phenotypes of Mice Double Heterozygous for Foxc1 and Foxc2.

作者信息

Motojima Masaru, Tanimoto Sho, Ohtsuka Masato, Matsusaka Taiji, Kume Tsutomu, Abe Koichiro

出版信息

Cells Tissues Organs. 2016;201(5):380-9. doi: 10.1159/000445027. Epub 2016 May 19.

Abstract

Foxc1 and Foxc2 play key roles in mouse development. Foxc1 mutant mice develop duplex kidneys with double ureters, and lack calvarial and sternal bones. Foxc2 null mice have been reported to have glomerular abnormalities in the kidney and axial skeletal anomalies. Expression patterns of Foxc1 and Foxc2 overlap extensively and are believed to have interactive roles. However, cooperative roles of these factors in glomerular and skeletal development are unknown. Therefore, we examined the kidneys and skeleton of mice that were double heterozygous for Foxc1 and Foxc2. Double heterozygotes were generated by mating single heterozygotes for Foxc1 and Foxc2. Newborn double heterozygous mice showed many anomalies in the kidney and urinary tract resembling Foxc1 phenotypes, including duplex kidneys, double ureters, hydronephrosis and mega-ureter. Some mice had hydronephrosis alone. In addition to these macroscopic anomalies, some mice had abnormal glomeruli and disorganized glomerular capillaries observed in Foxc2 phenotypes. Interestingly, these mice also showed glomerular cysts not observed in the single-gene knockout of either Foxc1 or Foxc2 but observed in conditional knockout of Foxc2 in the kidney. Serial section analysis revealed that all cystic glomeruli were connected to proximal tubules, precluding the possibility of atubular glomeruli resulting in cyst formation. Dorsally opened vertebral arches and malformations of sternal bones in the double heterozygotes were phenotypes similar to Foxc1 null mice. Absent or split vertebral bodies in the double heterozygotes were phenotypes similar to Foxc2 null mice, whilst hydrocephalus noted in the Foxc1 phenotype was not observed. Thus, Foxc1 and Foxc2 have a role in kidney and axial skeleton development. These transcription factors might interact in the regulation of the embryogenesis of these organs.

摘要

Foxc1和Foxc2在小鼠发育过程中发挥关键作用。Foxc1突变小鼠会发育出带有双输尿管的双肾,且缺乏颅骨和胸骨。据报道,Foxc2基因敲除小鼠存在肾脏肾小球异常和轴向骨骼异常。Foxc1和Foxc2的表达模式广泛重叠,被认为具有相互作用的功能。然而,这些因子在肾小球和骨骼发育中的协同作用尚不清楚。因此,我们研究了Foxc1和Foxc2双杂合子小鼠的肾脏和骨骼。通过将Foxc1和Foxc2的单杂合子进行交配产生双杂合子。新生双杂合子小鼠在肾脏和尿路中表现出许多类似于Foxc1表型的异常,包括双肾、双输尿管、肾积水和巨输尿管。一些小鼠仅出现肾积水。除了这些宏观异常外,一些小鼠还出现了在Foxc2表型中观察到的肾小球异常和肾小球毛细血管紊乱。有趣的是,这些小鼠还出现了在Foxc1或Foxc2单基因敲除中未观察到但在肾脏中Foxc2条件性敲除中观察到的肾小球囊肿。连续切片分析显示,所有囊性肾小球都与近端小管相连,排除了无肾小管肾小球导致囊肿形成的可能性。双杂合子小鼠背侧开放的椎弓和胸骨畸形是与Foxc1基因敲除小鼠相似的表型。双杂合子小鼠中椎体缺失或分裂是与Foxc2基因敲除小鼠相似的表型,而在Foxc1表型中观察到的脑积水则未出现。因此,Foxc1和Foxc2在肾脏和轴向骨骼发育中发挥作用。这些转录因子可能在这些器官的胚胎发生调控中相互作用。

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