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Aqp5 Is a New Transcriptional Target of Dot1a and a Regulator of Aqp2

  • Hongyu Wu
  • , Lihe Chen
  • , Xi Zhang
  • , Qiaoling Zhou
  • , Ju Mei Li
  • , Stefan Berger
  • , Zea Borok
  • , Beiyun Zhou
  • , Zhou Xiao
  • , Hongling Yin
  • , Mingyao Liu
  • , Ying Wang
  • , Jianping Jin
  • , Michael R. Blackburn
  • , Yang Xia
  • , Wenzheng Zhang*
  • *此作品的通讯作者
  • University of Texas Health Science Center at Houston
  • University of Texas at Austin
  • Central South University
  • German Cancer Research Center
  • University of Southern California
  • Texas A&M University

科研成果: 期刊稿件文章同行评审

摘要

Dot1l encodes histone H3 K79 methyltransferase Dot1a. Mice with Dot1l deficiency in renal Aqp2-expressing cells (Dot1lAC) develop polyuria by unknown mechanisms. Here, we report that Aqp5 links Dot1l deletion to polyuria through Aqp2. cDNA array analysis revealed and real-time RT-qPCR validated Aqp5 as the most upregulated gene in Dot1lAC vs. control mice. Aqp5 protein is barely detectable in controls, but robustly expressed in the Dot1lAC kidneys, where it colocalizes with Aqp2. The upregulation of Aqp5 is coupled with reduced association of Dot1a and H3 dimethyl K79 with specific subregions in Aqp5 5′ flanking region in Dot1lAC vs. control mice. In vitro studies in IMCD3, MLE-15 and 293Tcells using multiple approaches including real-time RT-qPCR, luciferase reporter assay, cell surface biotinylation assay, colocalization, and co-immunoprecipitation uncovered that Dot1a represses Aqp5. Human AQP5 interacts with AQP2 and impairs its cell surface localization. The AQP5/AQP2 complex partially resides in the ER/Golgi. Consistently, AQP5 is expressed in none of 15 normal controls, but in all of 17 kidney biopsies from patients with diabetic nephropathy. In the patients with diabetic nephropathy, AQP5 colocalizes with AQP2 in the perinuclear region and AQP5 expression is associated with impaired cellular H3 dimethyl K79. Taken together, these data for the first time identify Aqp5 as a Dot1a potential transcriptional target, and an Aqp2 binding partner and regulator, and suggest that the upregulated Aqp5 may contribute to polyuria, possibly by impairing Aqp2 membrane localization, in Dot1lAC mice and in patients with diabetic nephropathy.

源语言英语
文章编号e53342
期刊PLoS ONE
8
1
DOI
出版状态已出版 - 17 1月 2013
已对外发布

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    可持续发展目标 3 良好健康与福祉

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