先天性肾和尿路异常患者的ETV4突变

Jing Chen, A. T. van der Ven, J. Newman, A. Vivante, Nina Mann, H. Aitkenhead, S. Shril, Hadas Ityel, J. Schulz, J. Schmidt, E. Widmeier, O. Gileadi, F. Costantini, Shifaan Thowfeequ, R. Wenger, S. Bauer, R. S. Lee, Weining Lu, Maike Getwan, Michael M. Kaminski, S. Lienkamp, R. Lifton, V. Tasic, E. Kehinde, F. Hildebrandt
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引用次数: 2

摘要

先天性肾和尿路异常(ckut)是儿童慢性肾病最常见的原因。尽管到目前为止,已有超过30种单基因原因与分离形式的人类CAKUT有关,但绝大多数原因仍然难以捉摸。为了确定CAKUT的新单基因原因,我们对一位患有分离CAKUT的近亲血统患者进行了纯合子定位和全外显子组测序。我们发现了Ets易位变异基因4 (ETV4)的一个纯合错义突变(p.a g415his)。转录因子ETV4是GDNF/RET信号通路的下游靶点,在肾脏发育中起着至关重要的作用。我们通过电泳迁移转移实验表明,Arg415His突变体导致ETV4的DNA结合亲和力丧失,并且在基于细胞的荧光素酶报告基因实验中无法激活转录。我们进一步研究了突变蛋白对细胞迁移速率的影响。与野生型ETV4不同,Arg415His突变体未能挽救在两个ETV4敲除细胞系中观察到的细胞迁移缺陷。因此,我们在一名患有CAKUT的人类患者中发现了ETV4的隐性突变,并对其进行了功能表征。我们假设这种突变的发病机制可能是通过ETV4转录功能的丧失,从而导致GDNF/RET/ETV4信号通路的中断。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ETV4 Mutation in a Patient with Congenital Anomalies of the Kidney and Urinary Tract
Congenital anomalies of the kidney and urinary tract (CAKUT) are the most common reason for chronic kidney disease in children. Although more than 30 monogenic causes have been implicated in isolated forms of human CAKUT so far, the vast majority remains elusive. To identify novel monogenic causes of CAKUT we applied homozygosity mapping, together with whole exome sequencing, in a patient from consanguineous descent with isolated CAKUT. We identified a homozygous missense mutation (p.Arg415His) of the Ets Translocation Variant Gene 4 (ETV4). The transcription factor ETV4 is a downstream target of the GDNF/RET signaling pathway that plays a crucial role in kidney development. We show by means of electrophoretic mobility shift assay that the Arg415His mutant causes loss of the DNA binding affinity of ETV4 and fails to activate transcription in a cell-based luciferase reporter assay. We furthermore investigated the impact of the mutant protein on cell migration rate. Unlike wildtype ETV4, the Arg415His mutant failed to rescue cell migration defects observed in two ETV4 knock-down cell-lines. We therefore identified and functionally characterized a recessive mutation in ETV4 in a human patient with CAKUT. We hypothesize that the pathomechanism of this mutation could be via loss of the transcriptional function of ETV4, and a resulting abrogation of GDNF/RET/ETV4 signaling pathway. 
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