Rivolta Marcelo N, Halsall Antony, Johnson Claire M, Tones Michael A, Holley Matthew C
Institute of Molecular Physiology, Department of Biomedical Sciences, University of Sheffield, Sheffield S10 2TN, United Kingdom.
Genome Res. 2002 Jul;12(7):1091-9. doi: 10.1101/gr.225602.
We have used Affymetrix high-density gene arrays to generate a temporal profile of gene expression during differentiation of UB/OC-1, a conditionally immortal cell line derived from the mouse cochlea. Gene expression was assessed daily for 14 days under differentiating conditions. The experiment was replicated in two separate populations of cells. Profiles for selected genes were correlated with those obtained by RT-PCR, TaqMan analysis, immunoblotting, and immunofluorescence. The results suggest that UB/OC-1 is derived from a population of nonsensory epithelial cells in the greater epithelial ridge that have the potential to differentiate into a hair-cell-like phenotype, without the intervention of Math1. Elements of the Notch signaling cascade were identified, including the receptor Notch3, with a transient up-regulation that suggests a role in hair cell differentiation. Several genes showed a profile similar to Notch3, including the transcriptional co-repressor Groucho1. UB/OC-1 also expressed Me1, a putative partner of Math1 that may confer competence to differentiate into hair cells. Cluster analysis revealed expression profiles for neural guidance genes associated with Gata3. The temporal dimension of this analysis provides a powerful tool to study genetic mechanisms that underlie the conversion of nonsensory epithelial cells into hair cells.
我们使用了Affymetrix高密度基因芯片来生成UB/OC-1细胞分化过程中的基因表达时间图谱,UB/OC-1是一种源自小鼠耳蜗的条件性永生细胞系。在分化条件下,每天评估基因表达,持续14天。该实验在两个独立的细胞群体中重复进行。所选基因的图谱与通过逆转录聚合酶链反应(RT-PCR)、TaqMan分析、免疫印迹和免疫荧光获得的图谱相关。结果表明,UB/OC-1源自大上皮嵴中的一群非感觉上皮细胞,这些细胞有潜力在不依赖Math1干预的情况下分化为毛细胞样表型。鉴定出了Notch信号级联的元件,包括受体Notch3,其短暂上调表明在毛细胞分化中起作用。几个基因显示出与Notch3相似的图谱,包括转录共抑制因子Groucho1。UB/OC-1还表达了Me1,它是Math1的一个假定伙伴,可能赋予细胞分化为毛细胞的能力。聚类分析揭示了与Gata3相关的神经导向基因的表达图谱。该分析的时间维度为研究非感觉上皮细胞转化为毛细胞的遗传机制提供了一个强大的工具。