Department of Developmental Biology, Hagedorn Research Institute, Niels Steensens Vej 6, Gentofte, Denmark.
Dev Dyn. 2010 Jul;239(7):1950-66. doi: 10.1002/dvdy.22329.
Neurog3 is expressed transiently in pancreatic endocrine progenitors where it is responsible for activating a transcription factor cascade which eventually defines the mature endocrine cells. However, the mechanism by which Neurog3 regulates different aspects of the endocrine differentiation program is less clear. In this report we used in ovo electroporation to investigate how manipulation of Neurog3 protein activity affected migration, differentiation and fate determination. We found that changes in the onset of Neurog3 expression only had minor effect on differentiation. However increasing the transcriptional activity of Neurog3 by fusing it to VP16 or co-electroporating with Ep300 caused the electroporated cells to migrate rather than differentiate. In contrast, reducing the transcriptional activity of Neurog3 by deleting parts of the activation domain, by fusing Neurog3 to the engrailed repressor domain, or co-electroporating with Hdac1 greatly increased the proportion of glucagon expressing cells.
Neurog3 在胰腺内分泌祖细胞中短暂表达,负责激活转录因子级联反应,最终确定成熟的内分泌细胞。然而,Neurog3 调节内分泌分化程序不同方面的机制尚不清楚。在本报告中,我们使用鸡胚电穿孔技术研究了Neurog3 蛋白活性的改变如何影响迁移、分化和命运决定。我们发现,Neurog3 表达起始时间的改变仅对分化产生微小影响。然而,通过将 Neurog3 与 VP16 融合或将其与 Ep300 共电穿孔来增加其转录活性,会导致被电穿孔的细胞迁移而不是分化。相比之下,通过删除激活域的部分区域、将 Neurog3 与 engrailed 抑制域融合或与 Hdac1 共电穿孔来降低 Neurog3 的转录活性,会大大增加胰高血糖素表达细胞的比例。