Literature DB >> 18492795

Inducible expression of microRNA-194 is regulated by HNF-1alpha during intestinal epithelial cell differentiation.

Kimihiro Hino1, Kiichiro Tsuchiya, Taro Fukao, Kotaro Kiga, Ryuichi Okamoto, Takanori Kanai, Mamoru Watanabe.   

Abstract

Maintenance of the intestinal epithelium is based on well-balanced molecular mechanisms that confer the stable and continuous supply of specialized epithelial cell lineages from multipotent progenitors. Lineage commitment decisions in the intestinal epithelium system involve multiple regulatory systems that interplay with each other to establish the cellular identities. Here, we demonstrate that the microRNA system could be involved in intestinal epithelial cell differentiation, and that microRNA-194 (miR-194) is highly induced during this process. To investigate this inducible expression mechanism, we identified the genomic structure of the miR-194-2, -192 gene, one of the inducible class of miR-194 parental genes. Furthermore, we identified its transcriptional regulatory region that contains a consensus-binding motif for hepatocyte nuclear factor-1alpha (HNF-1alpha), which is well known as a transcription factor to regulate gene expression in intestinal epithelial cells. By chromatin immunoprecipitation assay and luciferase reporter analysis, we revealed that pri-miR-194-2 expression is controlled by HNF-1alpha, and its consensus binding region is required for the transcription of pri-miR-194-2 in vivo in an intestinal epithelial cell line, Caco-2. Our observations indicate that microRNA genes could be targets of lineage-specific transcription factors and that microRNAs are regulated by a tissue-specific manner in the intestinal epithelium. Therefore, our work suggests that induced expression of these microRNAs have important roles in intestinal epithelium maturation.

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Year:  2008        PMID: 18492795      PMCID: PMC2441992          DOI: 10.1261/rna.810208

Source DB:  PubMed          Journal:  RNA        ISSN: 1355-8382            Impact factor:   4.942


  42 in total

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Review 2.  Wnt signaling in the intestinal epithelium: from endoderm to cancer.

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3.  MicroRNA expression in zebrafish embryonic development.

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4.  Notch signals control the fate of immature progenitor cells in the intestine.

Authors:  Silvia Fre; Mathilde Huyghe; Philippos Mourikis; Sylvie Robine; Daniel Louvard; Spyros Artavanis-Tsakonas
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5.  The HOXC11 homeodomain protein interacts with the lactase-phlorizin hydrolase promoter and stimulates HNF1alpha-dependent transcription.

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6.  Involvement of microRNA in AU-rich element-mediated mRNA instability.

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7.  Mediation of differentiating effects of butyrate on the intestinal cell line Caco-2 by transforming growth factor-beta 1.

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  66 in total

1.  MicroRNA-92b regulates expression of the oligopeptide transporter PepT1 in intestinal epithelial cells.

Authors:  Guillaume Dalmasso; Hang Thi Thu Nguyen; Yutao Yan; Hamed Laroui; Moiz A Charania; Tracy S Obertone; Shanthi V Sitaraman; Didier Merlin
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Review 3.  Regulation of gene expression in the intestinal epithelium.

Authors:  Camilla A Richmond; David T Breault
Journal:  Prog Mol Biol Transl Sci       Date:  2010       Impact factor: 3.622

4.  Circulating levels of the miRNAs, miR-194, and miR-29b, as clinically useful biomarkers for colorectal cancer.

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5.  miR-194 is a marker of hepatic epithelial cells and suppresses metastasis of liver cancer cells in mice.

Authors:  Zhipeng Meng; Xianghui Fu; Xiaosong Chen; Samuel Zeng; Yan Tian; Richard Jove; Rongzhen Xu; Wendong Huang
Journal:  Hepatology       Date:  2010-10-26       Impact factor: 17.425

Review 6.  MicroRNAs: key modulators of posttranscriptional gene expression.

Authors:  Steven P O'Hara; Justin L Mott; Patrick L Splinter; Gregory J Gores; Nicholas F LaRusso
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7.  MicroRNA-210 regulates cancer cell proliferation through targeting fibroblast growth factor receptor-like 1 (FGFRL1).

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8.  Comprehensive silencing of target-sharing microRNAs is a mechanism for SIRT1 overexpression in cancer.

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9.  Deciphering the porcine intestinal microRNA transcriptome.

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10.  The microRNA signature in response to insulin reveals its implication in the transcriptional action of insulin in human skeletal muscle and the role of a sterol regulatory element-binding protein-1c/myocyte enhancer factor 2C pathway.

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Journal:  Diabetes       Date:  2009-08-31       Impact factor: 9.461

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