Huber M C, Bosch F X, Sippel A E, Bonifer C
Institut für Biologie III, Universität Freiburg, Germany.
Nucleic Acids Res. 1994 Oct 11;22(20):4195-201. doi: 10.1093/nar/22.20.4195.
The complete chicken lysozyme gene locus is expressed copy number dependently and at a high level in macrophages of transgenic mice. Gene expression independent of genomic position can only be achieved by the concerted action of all cis regulatory elements located on the lysozyme gene domain. Position independency of expression is lost if one essential cis regulatory region is deleted. Here we compared the DNase I hypersensitive site (DHS) pattern formed on the chromatin of position independently and position dependently expressed transgenes in order to assess the influence of deletions within the gene domain on active chromatin formation. We demonstrate, that in position independently expressed transgene all DHSs are formed with the authentic relative frequency on all genes. This is not the case for position dependently expressed transgenes. Our results show that the formation of a DHS during cellular differentiation does not occur autonomously. In case essential regulatory elements of the chicken lysozyme gene domain are lacking, the efficiency of DHS formation on remaining cis regulatory elements during myeloid differentiation is reduced and influenced by the chromosomal position. Hence, no individual regulatory element on the lysozyme domain is capable of organizing the chromatin structure of the whole locus in a dominant fashion.
完整的鸡溶菌酶基因座在转基因小鼠的巨噬细胞中以拷贝数依赖的方式高水平表达。只有通过位于溶菌酶基因域上的所有顺式调控元件的协同作用,才能实现与基因组位置无关的基因表达。如果删除一个必需的顺式调控区域,表达的位置独立性就会丧失。在这里,我们比较了在位置独立和位置依赖表达的转基因染色质上形成的DNase I超敏位点(DHS)模式,以评估基因域内缺失对活性染色质形成的影响。我们证明,在位置独立表达的转基因中,所有DHS在所有基因上都以真实的相对频率形成。对于位置依赖表达的转基因则并非如此。我们的结果表明,细胞分化过程中DHS的形成不是自主发生的。如果缺乏鸡溶菌酶基因域的必需调控元件,髓系分化过程中剩余顺式调控元件上DHS形成的效率会降低,并受染色体位置的影响。因此,溶菌酶域上没有单个调控元件能够以显性方式组织整个基因座的染色质结构。