Heximer S P, Cristillo A D, Russell L, Forsdyke D R
DNA Cell Biol. 1996 Dec;15(12):1025-38. doi: 10.1089/dna.1996.15.1025.
G0S3 is a member of a set of putative G0/G1 switch regulatory genes (G0S genes) selected by screening cDNA libraries prepared from human blood mononuclear cells cultured for 2 hr with lectin and cycloheximide. The sequence shows high homology with the murine FOSB gene, which encodes a component of the AP1 transcriptional regulator. Comparison of cDNA and genomic sequences reveals a 4-exon structure characteristic of the FOS family of genes. Freshly isolated cells show high levels of FOSB/G0S3 and FOS/G0S7 mRNAs, which decline rapidly during incubation in culture medium. The kinetics of expression suggest that the high initial levels are caused by the isolation procedure, and do not reflect constitutive expression. In cells preincubated for a day, levels of FOS mRNA reach a maximum 20 min after the addition of lectin and decline to control levels over the next 3 hr. Levels of FOSB mRNA reach a maximum 40 min after the addition of lectin and decline to control levels over the next 6 hr. In freshly isolated cells, both FOS and FOSB mRNAs increase dramatically in response to the protein synthesis inhibitor cycloheximide. In preincubated cells, the cycloheximide response is decreased, especially in the case of FOSB. These differences in expression of FOS and FOSB suggest different roles and regulation. Regions of low base order-dependent stem-loop potential in the region of the gene are defined. These indicate where base order has been adapted for purposes other than stem-loop stability (e.g., encoding proteins or gene regulation). Regions of low potential in a 68.5-kb genomic segment containing the FOSB gene suggest that the potential may help locate genes in uncharted DNA sequences.
G0S3是一组假定的G0/G1转换调节基因(G0S基因)的成员,这些基因是通过筛选从用人血单核细胞与凝集素和环己酰亚胺培养2小时制备的cDNA文库中挑选出来的。该序列与小鼠FOSB基因具有高度同源性,后者编码AP1转录调节因子的一个组成部分。cDNA和基因组序列的比较揭示了FOS基因家族特有的4外显子结构。新鲜分离的细胞显示出高水平的FOSB/G0S3和FOS/G0S7 mRNA,它们在培养基中孵育期间迅速下降。表达动力学表明,最初的高水平是由分离过程引起的,并不反映组成型表达。在预孵育一天的细胞中,添加凝集素后20分钟FOS mRNA水平达到最大值,并在接下来的3小时内降至对照水平。添加凝集素后40分钟FOSB mRNA水平达到最大值,并在接下来的6小时内降至对照水平。在新鲜分离的细胞中,FOS和FOSB mRNA均因蛋白质合成抑制剂环己酰亚胺而显著增加。在预孵育的细胞中,环己酰亚胺反应减弱,尤其是FOSB的情况。FOS和FOSB表达的这些差异表明了不同的作用和调节方式。确定了该基因区域中低碱基顺序依赖性茎环潜力的区域。这些区域表明碱基顺序已被调整用于除茎环稳定性之外的其他目的(例如,编码蛋白质或基因调节)。在包含FOSB基因的68.5 kb基因组片段中低潜力区域表明,这种潜力可能有助于在未知DNA序列中定位基因。