Motojima Masaru, Kume Tsutomu, Matsusaka Taiji
Department of Clinical Pharmacology, Tokai University School of Medicine, Isehara, Kanagawa 259-1193, Japan.
Feinberg Cardiovascular Research Institute, Feinberg School of Medicine, Northwestern University, Chicago, Illinois 60611, USA.
Exp Cell Res. 2017 Mar 15;352(2):265-272. doi: 10.1016/j.yexcr.2017.02.016. Epub 2017 Feb 20.
Foxc1 and Foxc2 (Foxc1/2) are transcription factors involved in many biological processes. In adult kidneys, expression of Foxc1/2 is confined to the glomerular epithelial cells, i.e., podocytes. To bypass embryonic lethality of Foxc1/2 null mice, mice ubiquitously expressing inducible-Cre (ROSA26-CreER) or mice expressing Cre in podocytes (Nephrin-Cre) were mated with floxed-Foxc1 and floxed-Foxc2 mice. The CreER was activated in adult mice by administrations of tamoxifen. Eight weeks after tamoxifen treatment, ROSA26-CreER; Foxc1; Foxc2 mice developed microalbuminuria, while ROSA26-Cre ER; Foxc1; Foxc2 mice had no microalbuminuria. The kidneys of conditional-Foxc1/2 null mice showed proteinaceous casts, protein reabsorption droplets in tubules and huge vacuoles in podocytes, indicating severe podocyte injury and massive proteinuria. Comparison of gene expression profiles revealed that Foxc1/2 maintain expression of genes necessary for podocyte function such as podocin and Cxcl12. In addition, mice with an innate podocyte-specific deletion of Foxc1/2 by Nephrin-Cre develop similar podocyte injury. These results demonstrate dose-dependence of Foxc1/2 gene in maintaining the podocyte with a more critical role for Foxc2 than Foxc1 and a critical role of Foxc1/2 in regulating expression of genes that maintain podocyte integrity.
Foxc1和Foxc2(Foxc1/2)是参与许多生物学过程的转录因子。在成年肾脏中,Foxc1/2的表达局限于肾小球上皮细胞,即足细胞。为了绕过Foxc1/2基因敲除小鼠的胚胎致死性,将普遍表达诱导型Cre的小鼠(ROSA26-CreER)或在足细胞中表达Cre的小鼠(Nephrin-Cre)与携带floxed-Foxc1和floxed-Foxc2的小鼠进行交配。通过给予他莫昔芬在成年小鼠中激活CreER。他莫昔芬治疗八周后,ROSA26-CreER; Foxc1; Foxc2小鼠出现微量白蛋白尿,而ROSA26-Cre ER; Foxc1; Foxc2小鼠没有微量白蛋白尿。条件性Foxc1/2基因敲除小鼠的肾脏显示出蛋白管型、肾小管中的蛋白重吸收滴以及足细胞中的巨大空泡,表明严重的足细胞损伤和大量蛋白尿。基因表达谱的比较显示,Foxc1/2维持足细胞功能所需基因如足动蛋白和Cxcl12的表达。此外,通过Nephrin-Cre对Foxc1/2进行先天性足细胞特异性缺失的小鼠也会出现类似的足细胞损伤。这些结果表明Foxc1/2基因在维持足细胞方面存在剂量依赖性,其中Foxc2比Foxc1发挥更关键的作用,并且Foxc1/2在调节维持足细胞完整性的基因表达中起关键作用。