Department of Genetics, Department of Ophthamology, Howard Hughes Medical Institute, Harvard Medical School, Boston, MA 02115, USA.
Dev Biol. 2011 Dec 1;360(1):241-55. doi: 10.1016/j.ydbio.2011.09.012. Epub 2011 Sep 21.
The homeodomain protein, Otx2, is a critical regulator of vertebrate photoreceptor genesis. However, the genetic elements that define the expression of Otx2 during photoreceptor development are unknown. Therefore, we sought to identify an Otx2 enhancer element that functions in photoreceptor development in order to better understand this specification event. Using the technique of electroporation, we tested a number of evolutionarily conserved elements (ECRs) for expression in the developing retina, and identified ECR2 as having robust activity in the retina. We have characterized this element using a number of assays, including Cre-fate mapping experiments. We found that ECR2 recapitulates expression/function of Otx2 primarily in newly postmitotic photoreceptor cells (PRs), as well as in a subset of retinal progenitor cells (RPCs). ECR2 was also found to be expressed in a subset of horizontal cells (HCs), in keeping with the role of Otx2 in HC development. Furthermore, we determined that the ECR2 element is not active in other Otx2-positive cells such as retinal bipolar cells (BPs), retinal pigmented epithelium (RPE), or the tectum, suggesting that the transcriptional networks controlling Otx2 expression in these cells are unique from those of developing PRs and HCs. These results reveal a distinct molecular state in dividing retinal cells and their newly postmitotic progeny, and provide genetic access to an early and critical transcriptional node involved in the genesis of vertebrate PRs.
同源盒蛋白 Otx2 是脊椎动物光感受器发生的关键调节因子。然而,定义光感受器发育过程中 Otx2 表达的遗传元件尚不清楚。因此,我们试图鉴定一个在光感受器发育中起作用的 Otx2 增强子元件,以便更好地理解这一特定事件。我们使用电穿孔技术测试了许多进化上保守的元件(ECRs)在发育中的视网膜中的表达,并确定 ECR2 在视网膜中有很强的活性。我们使用多种测定法,包括 Cre 命运映射实验,对该元件进行了特征描述。我们发现 ECR2 主要在新有丝分裂的光感受器细胞(PRs)以及一部分视网膜祖细胞(RPCs)中重现 Otx2 的表达/功能。还发现 ECR2 在一部分水平细胞(HCs)中表达,这与 Otx2 在 HC 发育中的作用一致。此外,我们确定 ECR2 元件在其他 Otx2 阳性细胞(如视网膜双极细胞(BPs)、视网膜色素上皮(RPE)或顶盖)中不活跃,这表明控制这些细胞中 Otx2 表达的转录网络与正在发育的 PRs 和 HCs 的转录网络不同。这些结果揭示了分裂的视网膜细胞及其新有丝分裂的后代中的一个独特的分子状态,并为参与脊椎动物 PR 发生的早期和关键转录节点提供了遗传途径。