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Genomic organization and promoter analysis of a mouse homeobox gene, Hex.

Genomic organization and promoter analysis of a mouse homeobox gene, Hex. Research Abstract Details 

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  • Genomic organization and promoter analysis of a mouse homeobox gene, Hex. Abstract Text:

    z myintZ Myint,t inazuT Inazu,t tanakaT Tanaka,k yamadaK Yamada,v w kengV W Keng,y inoueY Inoue,m kuriyamaM Kuriyama,t noguchiT Noguchi,

    A homeobox gene, Hex, is mainly expressed in haematopoietic cells and hepatocytes. It is assumed to play a role in the early stage of differentiation of these cells. To understand the mechanisms involved in the regulation of the Hex gene expression in hepatocytes, we cloned and characterized the mouse Hex gene. The gene consists of four exons and three introns, and spans about 5.7 kb. All the exon-intron boundaries are consistent with the "GT-AG" rule. A single transcription start site was identified by primer extension and S1 mapping analyses. Although the 5'-flanking region is G/C rich (69%), it contains probable "TATA and CCAAT" boxes. Potential binding sequences for transcriptional regulatory proteins including Sp1 and AP-2 are also present in this region. Functional analysis of the Hex promoter was performed by transfecting MH1C1, HeLa, COS-7, and Caco-2 cells with Hex promoter region-luciferase constructs. We found three possible positive regulatory regions, comprising of nucleotides -199 and -172, -154 and -133, and -105 and -68, respectively, required for Hex gene expression in MH1C1 cells by analyses of a series of 5'-deletion constructs of the fusion genes. The activities of these constructs were extremely low in HeLa, COS-7, and Caco-2 cells suggesting that they possess cell-type specificity. Further analysis revealed two GC boxes, GC box1 and GC box2, at nucleotides -197 to -188 and -176 to -167, respectively, necessary for Hex gene expression. Thus, multiple regulatory elements contribute to the Hex gene expression in hepatocytes.

    Genomic organization and promoter analysis of a mouse homeobox gene, Hex. Publishing Authors By Initials

    z myintZ Myint,t inazuT Inazu,t tanakaT Tanaka,k yamadaK Yamada,vw kengVW Keng,y inoueY Inoue,m kuriyamaM Kuriyama,t noguchiT Noguchi,

    For similar investigative techniques: genetic techniques: gene transfer techniques: transfection research abstracts see: investigative techniques: genetic techniques: gene transfer techniques: transfection research

    PUBMED ID PMID:

    MEDLINE DATE:

    Genomic organization and promoter analysis of a mouse homeobox gene, Hex. Journal Published:

    PUBLICATION TYPE: Journal Article

    Journal: Journal of biochemistry

    VOLUME: 125

    Page Numbers: 795-802

    Journal Abbreviation: J. Biochem.

    ISSN: 0021-924X

    DAY: 19

    MONTH: Apr

    YEAR: 1999

    Genomic organization and promoter analysis of a mouse homeobox gene, Hex. Information

    Number of References:

    LANGUAGE: eng

    NlmUniqueID: 376600

    Genomic organization and promoter analysis of a mouse homeobox gene, Hex. Keywords Mesh Terms:

    KEYWORDS: Transfection

    MESH TERMS: genetics

    Chemical & Substance for Abstract: Genomic organization and promoter analysis of a mouse homeobox gene, Hex. Information

    Substance Name: Luciferases

    Registry Number: EC 1.13.12.-

    Grant and Affiliation Information for Genomic organization and promoter analysis of a mouse homeobox gene, Hex.

    AFFILIATION: Department of Biochemistry Graduate School of Bioagricultural Sciences, Nagoya University, Chikusa-ku, Nagoya, 464-8601, Japan.

    Country: JAPAN

    JAPAN Research PublicationJAPAN Research Publication

    AGENCY:

    GRANT:

    ACRONYM:

    MEDLINETA: J Biochem

    REFSOURCE:

    DATABASENAME:

    ACCESSION NUMBER: AB017132

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