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Mutations of HNF-1β inhibit epithelial morphogenesis through dysregulation of SOCS-3

机译:HNF-1β突变通过SOCS-3失调抑制上皮形态发生

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Hepatocyte nuclear factor-1β (HNF-1β) is a Pit-1, Oct-1/2, Unc-86 (POU) homeodomain-containing transcription factor expressed in the kidney, liver, pancreas, and other epithelial organs. Mutations of HNF-1β cause maturity-onset diabetes of the young, type 5 (M0DY5), which is characterized by early-onset diabetes mellitus and congenital malformations of the kidney, pancreas, and genital tract. Knockout of HNF-1β in the mouse kidney results in cyst formation. However, the signaling pathways and transcriptional programs controlled by HNF-1β are poorly understood. Using genome-wide chromatin immunoprecipitation and DNA microar-ray (ChlP-chip) and microarray analysis of mRNA expression, we identified SOCS3 (suppressor of cytokine signaling-3) as a previously unrecognized target gene of HNF-1β in the kidney. HNF-1β binds to the SOCS3 promoter and represses SOCS3 transcription. The expression of SOCS3 is increased in HNF-1β knockout mice and in renal epithelial cells expressing dominant-negative mutant HNF-1β. Increased levels of SOCS-3 inhibit HGF-induced tubulogenesis by decreasing phosphorylation of Erk and STAT-3. Conversely, knockdown of SOCS-3 in renal epithelial cells expressing dominant-negative mutant HNF-1β rescues the defect in HGF-induced tubulogenesis by restoring phosphorylation of Erk and STAT-3. Thus, HNF-1β regulates tubulogenesis by controlling the levels of SOCS-3 expression. Manipulating the levels of SOCS-3 may be a useful therapeutic approach for human diseases induced by HNF-1β mutations.
机译:肝细胞核因子-1β(HNF-1β)是在肾脏,肝脏,胰腺和其他上皮器官中表达的含Pit-1,Oct-1 / 2,Unc-86(POU)同源结构域的转录因子。 HNF-1β的突变会导致5型年轻人(M0DY5)的成熟期糖尿病,其特征是早期发病的糖尿病以及肾脏,胰腺和生殖道的先天性畸形。 HNF-1β在小鼠肾脏中的敲除导致囊肿形成。然而,人们对由HNF-1β控制的信号通路和转录程序知之甚少。使用全基因组染色质免疫沉淀和DNA微弧线(ChlP芯片)和基因表达的微阵列分析,我们确定了SOCS3(细胞因子信号传导抑制剂3)是肾脏中HNF-1β先前无法识别的靶基因。 HNF-1β与SOCS3启动子结合并抑制SOCS3转录。 SOCS3的表达在HNF-1β敲除小鼠和表达显性负突变HNF-1β的肾上皮细胞中增加。增加的SOCS-3水平通过降低Erk和STAT-3的磷酸化来抑制HGF诱导的微管形成。相反,在表达显性阴性突变体HNF-1β的肾上皮细胞中,SOCS-3的敲低可以通过恢复Erk和STAT-3的磷酸化来挽救HGF诱导的肾小管生成的缺陷。因此,HNF-1β通过控制SOCS-3表达水平来调节肾小管生成。操纵SOCS-3的水平可能是治疗由HNF-1β突变引起的人类疾病的有效方法。

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