Chin M T, Maemura K, Fukumoto S, Jain M K, Layne M D, Watanabe M, Hsieh C M, Lee M E
Program of Developmental Cardiovascular Biology, Cardiovascular Program of Developmental Cardiovascular Biology, Cardiology Division, Brigham and Women's Hospital, Department of Medicine, Harvard Medical School, Boston, MA 02115, USA.
J Biol Chem. 2000 Mar 3;275(9):6381-7. doi: 10.1074/jbc.275.9.6381.
We have cloned a cardiovascular-restricted basic helix-loop-helix factor that interacts with arylhydrocarbon receptor nuclear translocator (ARNT) in a yeast two-hybrid screen. Cardiovascular helix-loop-helix factor 1 (CHF1) is distantly related to the hairy family of transcriptional repressors. We analyzed its expression pattern during mouse embryo development. At day 8.5, the expression of CHF1 is first detected in the primitive ventricle of the primordial heart tube and persists throughout gestation. In rat hearts, this expression is down-regulated after birth, concurrent with terminal differentiation of cardiomyocytes. In the developing vasculature, CHF1 first appears in the dorsal aorta at day 9.0, which precedes the reported expression of smooth muscle cell markers, and persists into adulthood. In an in vitro system of smooth muscle cell differentiation, CHF1 mRNA was barely detectable in undifferentiated cells but was induced highly in differentiated smooth muscle cells. To determine whether CHF1 might affect the function of ARNT, we performed transfection studies. Co-transfection of CHF1 inhibited ARNT/EPAS1-dependent transcription by 85%, and this inhibition is dose-dependent. In electrophoretic mobility studies, CHF1 inhibited the binding of the ARNT/EPAS1 heterodimer to its target site. Our data suggest that CHF1 functions as a transcriptional repressor and may play an important role in cardiovascular development.
我们在酵母双杂交筛选中克隆了一种与芳烃受体核转运蛋白(ARNT)相互作用的心血管限制性碱性螺旋-环-螺旋因子。心血管螺旋-环-螺旋因子1(CHF1)与转录抑制因子毛状家族有较远的亲缘关系。我们分析了它在小鼠胚胎发育过程中的表达模式。在胚胎第8.5天,首次在原始心管的原始心室中检测到CHF1的表达,并在整个妊娠期持续存在。在大鼠心脏中,出生后这种表达下调,与心肌细胞的终末分化同时发生。在发育中的血管系统中,CHF1在第9.0天首次出现在背主动脉中,早于报道的平滑肌细胞标志物的表达,并持续到成年期。在平滑肌细胞分化的体外系统中,未分化细胞中几乎检测不到CHF1 mRNA,但在分化的平滑肌细胞中高度诱导表达。为了确定CHF1是否可能影响ARNT的功能,我们进行了转染研究。CHF1共转染抑制ARNT/EPAS1依赖性转录达85%,且这种抑制呈剂量依赖性。在电泳迁移率研究中,CHF1抑制ARNT/EPAS1异二聚体与其靶位点的结合。我们的数据表明,CHF1作为一种转录抑制因子发挥作用,可能在心血管发育中起重要作用。