Sutton J, Costa R, Klug M, Field L, Xu D, Largaespada D A, Fletcher C F, Jenkins N A, Copeland N G, Klemsz M, Hromas R
Division of Hematology/Oncology and the Walther Oncology Center, IB 442, Indiana University Medical Center, Indianapolis, Indiana 46202-5121, USA.
J Biol Chem. 1996 Sep 20;271(38):23126-33. doi: 10.1074/jbc.271.38.23126.
A novel member of the winged helix (formerly HNF-3/Forkhead) transcriptional regulatory family, termed Genesis, was isolated and characterized. Putative translation of the complete cDNA revealed the winged helix DNA binding domain to be centrally located within the protein, with regions on either side that contain known transcriptional regulatory motifs. Extensive Northern analysis of Genesis found that the message was exclusively expressed in embryonic stem cells or their malignant equivalent, embryonal carcinoma cells. The Genesis transcript was down-regulated when these cells were stimulated to differentiate. DNA sequences that Genesis protein would interact with were characterized and were found to contain a consensus similar to that found in an embryonic stem cell enhancer sequence. Co-transfection experiments revealed that Genesis is a transcriptional repressor. Genesis mapped to mouse chromosome 4 in a region syntenic with human chromosome 1p31, a site of nonrandom abnormalities in germ cell neoplasia, neuroblastoma, and acute lymphoblastic leukemia. Genesis is a candidate for regulating the phenotype of normal or malignant embryonic stem cells.
分离并鉴定了一种新的有翼螺旋(以前称为HNF-3/叉头)转录调节家族成员,命名为Genesis。完整cDNA的推定翻译显示,有翼螺旋DNA结合结构域位于蛋白质的中央位置,其两侧区域包含已知的转录调节基序。对Genesis进行的广泛Northern分析发现,该信息仅在胚胎干细胞或其恶性对应物胚胎癌细胞中表达。当这些细胞被刺激分化时,Genesis转录本会下调。对Genesis蛋白可能与之相互作用的DNA序列进行了表征,发现其包含与胚胎干细胞增强子序列中发现的序列相似的共有序列。共转染实验表明,Genesis是一种转录抑制因子。Genesis定位于小鼠4号染色体上与人1p31染色体同线的区域,该位点在生殖细胞肿瘤、神经母细胞瘤和急性淋巴细胞白血病中存在非随机异常。Genesis是调节正常或恶性胚胎干细胞表型的候选因子。