Human chromosome 21q22.2-qter carries a gene(s) responsible for downregulation of mlc2a

  • Kazuki Yasuhiro
    Departmant of Molecular and Cell Genetics, Graduate School of Medical Science, Tottori University
  • Nishigaki Ryuichi
    Departmant of Molecular and Cell Genetics, Graduate School of Medical Science, Tottori University
  • Kimura Motoshi
    Departmant of Biomedical Science, Regenerative Medicine and Biofunction, Graduate School of Medical Science, Tottori University
  • Kai Yoshiteru
    Departmant of Biomedical Science, Regenerative Medicine and Biofunction, Graduate School of Medical Science, Tottori University
  • Abe Satoshi
    Departmant of Biomedical Science, Regenerative Medicine and Biofunction, Graduate School of Medical Science, Tottori University
  • Okita Chiga
    Departmant of Biomedical Science, Regenerative Medicine and Biofunction, Graduate School of Medical Science, Tottori University
  • Shirayoshi Yasuaki
    Pharmaceutical Research Laboratory, KIRIN Brewery Co., Ltd.
  • Hanaoka Kazunori
    Laboratory of Molecular Embryology, Department of Bioscience, Kitasato University School of Science
  • Tomizuka Kazuma
    Pharmaceutical Research Laboratory, KIRIN Brewery Co., Ltd.
  • Oshimura Mitsuo
    Departmant of Biomedical Science, Regenerative Medicine and Biofunction, Graduate School of Medical Science, Tottori University

Bibliographic Information

Other Title
  • ダウン症モデルマウスで発現低下しているmlc2aとPEBPの責任領域のマッピング

Description

Congenital heart disease (CHD) is a major clinical manifestation of Down syndrome (DS). We recently showed that chimeric mice containing a human chromosome 21 (Chr 21) exhibited phenotypic traits of DS, including CHD. Our previous study showed that myosin light chain-2a (mlc2a) expression was reduced in the hearts of chimeric mice and DS patients. We found that phosphatidylethanolamine binding protein (PEBP) was also downregulated in Chr 21 chimeras in this study. As mlc2a is involved in heart morphogenesis, and PEBP controls the proliferation and differentiation of different cell types, these genes are candidates for involvement in DS-CHD. The DS-CHD candidate region has been suggested to span between PFKL and D21S3, which is the STS marker near the ETS2 loci. To identify gene(s) or a gene cluster on Chr 21 responsible for the downregulation of mlc2a and PEBP, we fragmented Chr 21 at the EST2 loci, by telomere-directed chromosome truncation in homologous recombination-proficient chicken DT40 cells. The modified Chr 21 was transferred to mouse ES cells by microcell-mediated chromosome transfer (MMCT), via CHO cells. We used ES cell lines retaining the Chr 21 truncated at the ETS2 locus (Chr 21E) to produce chimeric mice and compared overall protein expression patterns in hearts of the chimeras containing the intact and the fragmented Chr 21 by two dimensional electrophoresis. While mouse mlc2a and PEBP expression was downregulated in the chimeras containing the intact Chr 21, the expression was not affected in the Chr 21E chimeras. Therefore, we suggest that Chr 21 gene(s) distal from the ETS2 locus reduce mouse mlc2a and PEBP expression in DS model mice and DS. Thus, this chromosome engineering technology is a useful tool for identification or mapping of genes that contribute to the DS phenotypes.

Journal

Details 詳細情報について

  • CRID
    1390282680610421248
  • NII Article ID
    130006995845
  • DOI
    10.14889/jhupo.2004.0.123.0
  • Data Source
    • JaLC
    • CiNii Articles
  • Abstract License Flag
    Disallowed

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