Bonifer C, Yannoutsos N, Krüger G, Grosveld F, Sippel A E
Institut für Biologie III, Universität Freiburg, Germany.
Nucleic Acids Res. 1994 Oct 11;22(20):4202-10. doi: 10.1093/nar/22.20.4202.
The entire chicken lysozyme gene locus including all known cis-regulatory sequences and the 5' and 3' matrix attachment sites defining the borders of the DNase I sensitive chromatin domain, is expressed at a high level and independent of its chromosomal position in macrophages of transgenic mice. It was concluded that the lysozyme gene locus carries a locus control function. We analysed several cis-regulatory deletion mutants to investigate their influence on tissue specificity and level of expression. Position independent expression of the gene is lost whenever one of the upstream tissue specific enhancer regions is deleted, although tissue specific expression is usually retained. Deletion of the domain border fragments has no influence on copy number dependency of expression. However, without these regions an increased incidence of ectopic expression is observed. This suggests that the domain border fragments may help to suppress transgene expression in inappropriate tissues. We conclude, that position independent expression of the lysozyme gene is not controlled by a single specific region of the locus but is the result of the concerted action of several tissue specific upstream regulatory DNA elements with the promoter.
整个鸡溶菌酶基因座,包括所有已知的顺式调控序列以及界定脱氧核糖核酸酶I敏感染色质结构域边界的5'和3'基质附着位点,在转基因小鼠巨噬细胞中高水平表达,且与其染色体位置无关。由此得出结论,溶菌酶基因座具有基因座控制功能。我们分析了几个顺式调控缺失突变体,以研究它们对组织特异性和表达水平的影响。每当上游组织特异性增强子区域之一被删除时,基因的位置独立表达就会丧失,尽管组织特异性表达通常会保留。结构域边界片段的缺失对表达的拷贝数依赖性没有影响。然而,没有这些区域时,会观察到异位表达的发生率增加。这表明结构域边界片段可能有助于抑制转基因在不适当组织中的表达。我们得出结论,溶菌酶基因的位置独立表达不是由基因座的单个特定区域控制的,而是几个组织特异性上游调控DNA元件与启动子协同作用的结果。