Shaut Carley A, Saneyoshi Chie, Morgan Emily A, Knosp Wendy M, Sexton Diane R, Stadler H Scott
Department of Molecular and Medical Genetics, Oregon Health and Science University, Portland, Oregon.
Dev Dyn. 2007 Apr;236(4):951-60. doi: 10.1002/dvdy.21077.
Hypospadias, a common defect affecting the growth and closure of the external genitalia, is often accompanied by gross enlargements of the genital tubercle (GT) vasculature. Because Hoxa13 homozygous mutant mice also exhibit hypospadias and GT vessel expansion, we examined whether genes playing a role in angiogenesis exhibit reduced expression in the GT. From this analysis, reductions in EphA6 and EphA7 were detected. Characterization of EphA6 and EphA7 expression in the GT confirmed colocalization with HOXA13 in the GT vascular endothelia. Analysis of the EphA6 and EphA7 promoter regions revealed a series of highly conserved cis-regulatory elements bound by HOXA13 with high affinity. GT chromatin immunoprecipitation confirmed that HOXA13 binds these gene-regulatory elements in vivo. In vitro, HOXA13 activates gene expression through the EphA6 and EphA7 gene-regulatory elements. Together these findings indicate that HOXA13 directly regulates EphA6 and EphA7 in the developing GT and identifies the GT vascular endothelia as a novel site for HOXA13-dependent expression of EphA6 and EphA7.
尿道下裂是一种影响外生殖器生长和闭合的常见缺陷,常伴有生殖结节(GT)血管的明显增大。由于Hoxa13纯合突变小鼠也表现出尿道下裂和GT血管扩张,我们研究了在血管生成中起作用的基因在GT中是否表达降低。通过该分析,检测到EphA6和EphA7表达降低。GT中EphA6和EphA7表达的特征分析证实它们与GT血管内皮中的HOXA13共定位。EphA6和EphA7启动子区域分析揭示了一系列由HOXA13高亲和力结合的高度保守的顺式调控元件。GT染色质免疫沉淀证实HOXA13在体内结合这些基因调控元件。在体外,HOXA13通过EphA6和EphA7基因调控元件激活基因表达。这些发现共同表明HOXA13在发育中的GT中直接调节EphA6和EphA7,并将GT血管内皮确定为HOXA13依赖性EphA6和EphA7表达的新位点。