...
首页> 外文期刊>Developmental biology >ROBO2 restricts the nephrogenic field and regulates Wolffian duct-nephrogenic cord separation
【24h】

ROBO2 restricts the nephrogenic field and regulates Wolffian duct-nephrogenic cord separation

机译:ROBO2限制肾源性区域并调节Wolffian导管-肾源性脐带分离

获取原文
获取原文并翻译 | 示例

摘要

ABSTRACT ROBO2 plays a key role in regulating ureteric bud (UB) formation in the embryo, with mutations in humans and mice leading to supernumerary kidneys. Previous studies have established that the number and position of UB outgrowths is determined by the domain of metanephric mesenchymal Gdnf expression, which is expanded anteriorly in Robo2 mouse mutants. To clarify how this phenotype arises, we used high-resolution 3D imaging to reveal an increase in the number of nephrogenic cord cells, leading to extension of the metanephric mesenchyme field in Robo2-nu mouse embryos. Ex vivo experiments suggested a dependence of this effect on proliferative signals from the Wolffian duct. Loss of Robo2 resulted in a failure of the normal separation of the mesenchyme from the Wolffian duct/ureteric epithelium, suggesting that aberrant juxtaposition of these two compartments in itobo2-null mice exposes the mesenchyme to abnormally high levels of proliferative stimuli. Our data suggest a new model in which SLIT-ROBO signalling acts not by attenuating Gdnf expression or activity, but instead by limiting epithelial/mesenchymal interactions in the nascent metanephros and restricting the extent of the nephrogenic field. These insights illuminate the aetiology of multiplex kidney formation in human individuals with ROBO2 mutations.
机译:摘要ROBO2在调节胚胎中的输尿管芽(UB)形成中起关键作用,人类和小鼠中的突变导致肾脏数目过多。先前的研究已经确定,UB增生的数量和位置由后肾间充质Gdnf表达域决定,后者在Robo2小鼠突变体中向前方扩展。为了阐明这种表型是如何产生的,我们使用了高分辨率的3D成像技术来揭示肾原性脐带细胞数量的增加,从而导致Robo2-nu 小鼠胚胎中的后肾间质域的扩展。体外实验表明,这种作用依赖于来自沃尔夫导管的增殖信号。 Robo2的丢失导致间充质从Wolffian导管/输尿管上皮正常分离失败,这表明在itobo2无效小鼠中,这两个区室的并置异常使间充质暴露于异常高水平的增殖刺激下。我们的数据提示了一种新的模型,其中SLIT-ROBO信号传导不是通过减弱Gdnf的表达或活性,而是通过限制新生后肾中的上皮/间质相互作用并限制肾原性视野的范围来发挥作用。这些见解阐明了具有ROBO2突变的人类个体中多重肾脏形成的病因。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号