Characterization of human B creatine kinase gene regulation in the heart in vitro and in vivo

被引:0
|
作者
Ritchie, ME
机构
[1] UNIV CINCINNATI, COLL MED, CARDIOVASC RES CTR, CINCINNATI, OH 45267 USA
[2] VET ADM MED CTR, DIV CARDIOL, CINCINNATI, OH 45220 USA
关键词
D O I
暂无
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
During cardiogenesis, genes indicative of the adult phenotype are transcriptionally activated while genes characteristic of the embryonic phenotype are down-regulated. The regulation of embryonic genes such as the brain isoform of creatine kinase (BCK) during cardiac development has not been characterized. Accordingly, the transcriptional regulation of BCK in the developing heart was determined. In vitro and in vivo promoter analyses of the human BCK gene identified an element between +25 and +57 that functioned as an enhancer. Electromobility shift assays using adult and neonatal nuclear extracts identified a specific complex binding this element, the abundance of which correlated with the developmental level of endogenous cardiac BCK expression. Mutations at +47 and +53 led to a loss of activity in transfected cells and obviated binding in electromobility shift assays. These data show that a nuclear factor in cardiocytes interacts with an enhancer element (+25 and +57), via nucleotides +47 and +53, to drive BCK expression in the heart and suggest that developmental BCK expression is via abundance of this factor. The nuclear factor has not been identified but as described previously binding sites are not present in the enhancer, it is either a known factor interacting with a new recognition site or a new factor.
引用
收藏
页码:25485 / 25491
页数:7
相关论文
共 50 条
  • [41] PREPARATION OF HUMAN HEART SPECIFIC (MB) ISOENZYME OF CREATINE-KINASE
    LEVY, AL
    LUM, G
    CLINICAL CHEMISTRY, 1975, 21 (11) : 1691 - 1691
  • [42] Structure and regulation of an amphibian muscle-specific creatine kinase gene.
    Petersen, LF
    Atkinson, BG
    DEVELOPMENTAL BIOLOGY, 2002, 247 (02) : 463 - 463
  • [43] Characterization of 5′-regulatory region of human myostatin gene:: regulation by dexamethasone in vitro
    Ma, K
    Mallidis, C
    Artaza, J
    Taylor, W
    Gonzalez-Cadavid, N
    Bhasin, S
    AMERICAN JOURNAL OF PHYSIOLOGY-ENDOCRINOLOGY AND METABOLISM, 2001, 281 (06): : E1128 - E1136
  • [44] ISOLATION OF A FUNCTIONAL HUMAN-GENE FOR BRAIN CREATINE-KINASE
    DAOUK, GH
    KADDURAHDAOUK, R
    PUTNEY, S
    KINGSTON, R
    SCHIMMEL, P
    JOURNAL OF BIOLOGICAL CHEMISTRY, 1988, 263 (05) : 2442 - 2446
  • [45] SEQUENCE-ANALYSIS OF CDNA CLONES FOR HUMAN CREATINE-KINASE - DEVELOPMENT OF SPECIFIC PROBES FOR HUMAN M AND B CREATINE-KINASE
    VILLARREALLEVY, G
    MA, TS
    ROBERTS, R
    PERRYMAN, MB
    CLINICAL RESEARCH, 1987, 35 (03): : A332 - A332
  • [46] CLONING AND SEQUENCING OF THE HUMAN-GENE FOR M-CREATINE KINASE
    VILLARREALLEVY, G
    BUTCHER, AC
    MA, TS
    ROBERTS, R
    PERRYMAN, MB
    CIRCULATION, 1987, 76 (04) : 336 - 336
  • [47] NCOI RFLP IN HUMAN BRAIN CREATINE-KINASE GENE (CKBB)
    DIONNE, FT
    TURCOTTE, L
    GRONDIN, J
    THIBAULT, MC
    BOUCHARD, C
    NUCLEIC ACIDS RESEARCH, 1991, 19 (01) : 195 - 195
  • [48] PHYSICAL AND CHEMICAL CHARACTERIZATION OF MITOCHONDRIAL CREATINE-KINASE FROM BOVINE HEART
    JACOBS, HK
    GRAHAM, M
    FEDERATION PROCEEDINGS, 1978, 37 (06) : 1574 - 1574
  • [49] REGULATION OF CREATINE PHOSPHOKINASE-B ACTIVITY BY PROTEIN-KINASE-C
    CHIDA, K
    TSUNENAGA, M
    KASAHARA, K
    KOHNO, Y
    KUROKI, T
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1990, 173 (01) : 346 - 350
  • [50] In Vitro and in vivo expression of human erythrocyte pyruvate kinase in erythroid cells:: A gene therapy approach
    Meza, N. W.
    Quintana-Bustamante, O.
    Puyet, A.
    Rio, P.
    Navarro, S.
    Diez, A.
    Bueren, J. A.
    Bautista, J. M.
    Segovia, J. C.
    HUMAN GENE THERAPY, 2007, 18 (06) : 502 - 514