Kang Hong Soon, Beak Ju Youn, Kim Yong-Sik, Herbert Ronald, Jetten Anton M
LRB, Cell Biology Section, Division of Intramural Research, National Institutes of Health, Research Triangle Park, NC 27709, USA.
Mol Cell Biol. 2009 May;29(10):2556-69. doi: 10.1128/MCB.01620-08. Epub 2009 Mar 9.
In this study, we describe the generation and partial characterization of Krüppel-like zinc finger protein Glis3 mutant (Glis3(zf/zf)) mice. These mice display abnormalities very similar to those of patients with neonatal diabetes and hypothyroidism syndrome, including the development of diabetes and polycystic kidney disease. We demonstrate that Glis3 localizes to the primary cilium, suggesting that Glis3 is part of a cilium-associated signaling pathway. Although Glis3(zf/zf) mice form normal primary cilia, renal cysts contain relatively fewer cells with a primary cilium. We further show that Glis3 interacts with the transcriptional modulator Wwtr1/TAZ, which itself has been implicated in glomerulocystic kidney disease. Wwtr1 recognizes a P/LPXY motif in the C terminus of Glis3 and enhances Glis3-mediated transcriptional activation, indicating that Wwtr1 functions as a coactivator of Glis3. Mutations in the P/LPXY motif abrogate the interaction with Wwtr1 and the transcriptional activity of Glis3, indicating that this motif is part of the transcription activation domain of Glis3. Our study demonstrates that dysfunction of Glis3 leads to the development of cystic renal disease, suggesting that Glis3 plays a critical role in maintaining normal renal functions. We propose that localization to the primary cilium and interaction with Wwtr1 are key elements of the Glis3 signaling pathway.
在本研究中,我们描述了克勒ppel样锌指蛋白Glis3突变体(Glis3(zf/zf))小鼠的产生及部分特征。这些小鼠表现出与新生儿糖尿病和甲状腺功能减退综合征患者非常相似的异常,包括糖尿病和多囊肾病的发展。我们证明Glis3定位于初级纤毛,这表明Glis3是纤毛相关信号通路的一部分。尽管Glis3(zf/zf)小鼠形成正常的初级纤毛,但肾囊肿中含有初级纤毛的细胞相对较少。我们进一步表明Glis3与转录调节因子Wwtr1/TAZ相互作用,而Wwtr1/TAZ本身与肾小球囊肿性肾病有关。Wwtr1识别Glis3 C末端的P/LPXY基序并增强Glis3介导的转录激活,表明Wwtr1作为Glis3的共激活因子发挥作用。P/LPXY基序中的突变消除了与Wwtr1的相互作用以及Glis3的转录活性,表明该基序是Glis3转录激活域的一部分。我们的研究表明Glis3功能障碍导致囊性肾病的发展,这表明Glis3在维持正常肾功能中起关键作用。我们提出定位于初级纤毛以及与Wwtr1相互作用是Glis3信号通路的关键要素。