Department of Molecular and Cellular Biology, Harvard University, 16 Divinity Avenue, Cambridge, MA 02138, USA.
Mech Dev. 2002 Dec;119 Suppl 1:S97-S101. doi: 10.1016/s0925-4773(03)00099-6.
We have generated a transgenic line that expresses the Cre gene product under the regulation of a 12.5 kb upstream regulatory sequence from the Sox2 gene. Using a R26R reporter line, we show that this transgenic line induces recombination in all epiblast cells by embryonic day (E) 6.5 but little or no activity in other extraembryonic cell types at this time. When crossed to a conditional allele of the Sonic hedgehog gene (Shhc), all Sox2Cre;Shhn/Shhc embryos displayed a phenotype indistinguishable from that of the Shh null mutant. Sox2Cre functioned more efficiently in epiblast-mediated recombination than the Mox2Cre (MORE) transgenic line, which has also been shown to drive Cre-mediated recombination exclusively in the embryonic component of the early mouse embryo. Although most MORE; shhh/shhc embryos have a shh hull phenotype, 33% displayed a milder skeletal phenotype, most likely result of incomplete recombination at egg cylinder stages. In agreement with these findings, Sox2Cre was active earlier and Sox2Cre-mediated recombination was more advanced than MORE-mediated recombination at early gastrulation stages. The Sox2Cre line is likely to be more effective in generating complete, epiblast-specific removal of gene activity, and the mosaic activity of the MORE line will be helpful in generating partial loss-of-function phenotypes in the embryo-proper.
我们生成了一个转基因系,该系在 Sox2 基因的 12.5kb 上游调控序列的调控下表达 Cre 基因产物。使用 R26R 报告系,我们表明该转基因系在胚胎日 (E)6.5 时诱导所有外胚层细胞中的重组,但此时在外胚层细胞类型中几乎没有或没有活性。当与 Sonic hedgehog 基因(Shhc)的条件等位基因杂交时,所有 Sox2Cre;Shhn/Shhc 胚胎表现出与 Shh 缺失突变体无法区分的表型。Sox2Cre 在介导外胚层重组中的功能比已经显示在外胚层中专门驱动 Cre 介导重组的 Mox2Cre(MORE)转基因系更有效。尽管大多数 MORE;shhh/shhc 胚胎具有 shh 空泡表型,但 33%显示出更温和的骨骼表型,很可能是由于在卵圆柱阶段不完全重组所致。与这些发现一致,Sox2Cre 在早期原肠胚阶段比 MORE 介导的重组更早和更先进。Sox2Cre 系可能更有效地产生完整的、外胚层特异性的基因活性去除,而 MORE 系的镶嵌活性将有助于在胚胎中产生部分功能丧失表型。