Division of Molecular Immunology, National Institute for Medical Research, Medical Research Council, London NW7 1AA, UK.
Proc Natl Acad Sci U S A. 2010 Sep 28;107(39):16928-33. doi: 10.1073/pnas.1010317107. Epub 2010 Sep 13.
To study the influence of a locus control region (LCR) on the expression of a highly characterized, developmentally regulated locus, we have targeted the hCD2-LCR as a single copy into the endogenous mouse CD8 gene complex. Two knock-in mouse lines that differ in the integration site of the hCD2-LCR within the mCD8 gene complex were generated, and the influence on expression of the CD8 coreceptor was assessed. In these mice the normal developmental silencing of the CD8 genes in the CD4 lineage is deregulated, and the mice develop CD4(+) cells that also express the CD8 genes. This is accompanied by the physical maintenance of the CD8 genes within an extended loop away from their subchromosomal territory. Further analysis of these mice revealed unexpected fluid chromatin dynamics, whereby the LCR can be initially dominant over the endogenous CD8 gene-repressive regulatory processes present in CD4(+) cells but is continuously contested by them, resulting in the eventual inactivation of the inserted LCR, probably as a result of multiple rounds of replication.
为了研究一个基因调控区(LCR)对高度特征化的、发育调控基因座表达的影响,我们将 hCD2-LCR 靶向整合到内源性的小鼠 CD8 基因复合物中作为一个单拷贝。我们构建了两个敲入小鼠品系,它们在 hCD2-LCR 整合到 mCD8 基因复合物中的位置上存在差异,并评估了对 CD8 共受体表达的影响。在这些小鼠中,CD4 谱系中 CD8 基因的正常发育沉默被解除,并且这些小鼠发育出同时表达 CD8 基因的 CD4+细胞。这伴随着 CD8 基因在远离其亚染色体区域的扩展环内的物理维持。对这些小鼠的进一步分析揭示了意想不到的动态染色质动力学,其中 LCR 最初可以主导 CD4+细胞中存在的内源性 CD8 基因抑制性调控过程,但会不断受到它们的挑战,最终导致插入的 LCR 失活,可能是由于多次复制的结果。