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果蝇同源物 CTIP1(Bcl11a)和 CTIP2(Bcl11b)调节神经干细胞的时间模式。

The Drosophila homologue of CTIP1 (Bcl11a) and CTIP2 (Bcl11b) regulates neural stem cell temporal patterning.

机构信息

The Gurdon Institute and Department of Physiology, Development and Neuroscience, University of Cambridge, Tennis Court Road, Cambridge CB2 1QN, UK.

出版信息

Development. 2022 Sep 1;149(17). doi: 10.1242/dev.200677. Epub 2022 Sep 7.

Abstract

In the developing nervous system, neural stem cells (NSCs) use temporal patterning to generate a wide variety of different neuronal subtypes. In Drosophila, the temporal transcription factors, Hunchback, Kruppel, Pdm and Castor, are sequentially expressed by NSCs to regulate temporal identity during neurogenesis. Here, we identify a new temporal transcription factor that regulates the transition from the Pdm to Castor temporal windows. This factor, which we call Chronophage (or 'time-eater'), is homologous to mammalian CTIP1 (Bcl11a) and CTIP2 (Bcl11b). We show that Chronophage binds upstream of the castor gene and regulates its expression. Consistent with Chronophage promoting a temporal switch, chronophage mutants generate an excess of Pdm-specified neurons and are delayed in generating neurons associated with the Castor temporal window. In addition to promoting the Pdm to Castor transition, Chronophage also represses the production of neurons generated during the earlier Hunchback and Kruppel temporal windows. Genetic interactions with Hunchback and Kruppel indicate that Chronophage regulates NSC competence to generate Hunchback- and Kruppel-specified neurons. Taken together, our results suggest that Chronophage has a conserved role in temporal patterning and neuronal subtype specification.

摘要

在发育中的神经系统中,神经干细胞(NSCs)利用时间模式产生广泛的不同神经元亚型。在果蝇中,时间转录因子 Hunchback、Kruppel、Pdm 和 Castor 按顺序由 NSCs 表达,以在神经发生过程中调节时间身份。在这里,我们鉴定出一种新的时间转录因子,它调节从 Pdm 到 Castor 时间窗口的转变。这个因子,我们称之为 Chronophage(或“时间吞噬者”),与哺乳动物 CTIP1(Bcl11a)和 CTIP2(Bcl11b)同源。我们表明 Chronophage 结合在 castor 基因的上游,并调节其表达。与 Chronophage 促进时间开关一致,chronophage 突变体产生过多的 Pdm 指定神经元,并延迟产生与 Castor 时间窗口相关的神经元。除了促进 Pdm 到 Castor 的转变外,Chronophage 还抑制了在早期 Hunchback 和 Kruppel 时间窗口产生的神经元的产生。与 Hunchback 和 Kruppel 的遗传相互作用表明,Chronophage 调节 NSC 产生 Hunchback 和 Kruppel 指定神经元的能力。总之,我们的结果表明,Chronophage 在时间模式和神经元亚型特异性中具有保守作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/692e/9482335/17a6dc2e2606/develop-149-200677-g1.jpg

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