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Lineage-unrelated neurons generated in different temporal windows and expressing different combinatorial codes can converge in the activation of the same terminal differentiation gene

机译:在不同时间窗口中产生并且表达不同组合码的谱系无关神经元可以在相同终末分化基因的激活中收敛

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摘要

It is becoming increasingly clear that the activation of specific terminal differentiation genes during neural development is critically dependent upon the establishment of unique combinatorial transcription factor codes within distinct neural cell subtypes. However, it is still unclear to which extent these codes are shared by lineage-unrelated neurons expressing the same terminal differentiation genes. Additionally, it is not known if the activation of a specific terminal differentiation gene is restricted to cells born at a particular developmental time point. Here, we utilize the terminal differentiation gene FMRFa which is expressed by the Ap4 and SE2 neurons in the Drosophila ventral nerve cord, to explore these issues in depth. We find that the Ap4 and SE2 neurons are generated by different neural progenitors and use different combinatorial codes to activate FMRFa expression. Additionally, we find that the Ap4 and SE2 neurons are generated in different temporal gene expression windows. Extending the investigation to include a second Drosophila terminal differentiation gene, Leucokinin, we find similar results, suggesting that neurons generated by different progenitors might commonly use different transcription factor codes to activate the same terminal differentiation gene. Furthermore, these results imply that the activation of a particular terminal differentiation gene in temporally unrestricted.
机译:越来越清楚的是,神经发育过程中特定终末分化基因的激活关键取决于不同神经细胞亚型内独特的组合转录因子编码的建立。但是,仍然不清楚这些代码在多大程度上由表达相同终末分化基因的谱系无关神经元共享。另外,还不知道特定终末分化基因的激活是否限于在特定发育时间点出生的细胞。在这里,我们利用果蝇腹侧神经索中Ap4和SE2神经元表达的终末分化基因FMRFa来深入研究这些问题。我们发现Ap4和SE2神经元是由不同的神经祖细胞产生的,并使用不同的组合代码来激活FMRFa表达。此外,我们发现Ap4和SE2神经元在不同的时间基因表达窗口中生成。将研究范围扩大到包括第二个果蝇终末分化基因,白细胞激肽,我们发现相似的结果,表明由不同祖细胞产生的神经元可能通常使用不同的转录因子编码来激活相同的终末分化基因。此外,这些结果暗示特定的终末分化基因的激活在时间上不受限制。

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