Division of Human Reproduction and Developmental Genetics, The Women's Hospital, School of Medicine, Zhejiang University, Hangzhou 310000, China; Institute of Genetics, Zhejiang University, Hangzhou 310012, China; Department of Genetics, School of Medicine, Zhejiang University, Hangzhou 310012, China; College of Life Sciences, Zhejiang University, Hangzhou 310012, China.
Division of Human Reproduction and Developmental Genetics, The Women's Hospital, School of Medicine, Zhejiang University, Hangzhou 310000, China; Institute of Genetics, Zhejiang University, Hangzhou 310012, China; Department of Genetics, School of Medicine, Zhejiang University, Hangzhou 310012, China.
J Genet Genomics. 2017 Mar 20;44(3):151-162. doi: 10.1016/j.jgg.2017.02.005. Epub 2017 Mar 6.
In the Drosophila larval brain, type I and type II neuroblasts (NBs) undergo a series of asymmetric divisions which give rise to distinct progeny lineages. The intermediate neural progenitors (INPs) exist only in type II NB lineages. In this study, we reveal a novel function of Inscuteable (Insc) that acts to maintain type I NB lineage identity. In insc type I NB clones of mosaic analyses with a repressible cell marker (MARCM), the formation of extra Deadpan (Dpn) NB-like and GMC-like cells is observed. The lack of Insc leads to the defective localization and segregation of Numb during asymmetric cell division. By the end of cytokinesis, this results in insufficient Numb in ganglion mother cells (GMCs). The formation of extra Deadpan (Dpn) cells in insc clones is prevented by the attenuation of Notch activity. This suggests that Insc functions through the Numb/Notch signaling pathway. We also show that in the absence of Insc in type I NB lineages, the cellular identity of GMCs is altered where they adopt an INP-like cell fate as indicated by the initiation of Dpn expression accompanied by a transient presence of Earmuff (Erm). These INP-like cells have the capacity to divide multiple times. We conclude that Insc is necessary for the maintenance of type I NB lineage identity. Genetic manipulations to eliminate most type I NBs with overproliferating type II NBs in the larval brain lead to altered circadian rhythms and defective phototaxis in adult flies. This indicates that the homeogenesis of NB lineages is important for the adult's brain function.
在果蝇幼虫大脑中,I 型和 II 型神经母细胞 (NB) 经历一系列不对称分裂,产生不同的祖细胞谱系。中间神经前体细胞 (INP) 仅存在于 II 型 NB 谱系中。在这项研究中,我们揭示了 Inscuteable (Insc) 的一个新功能,它可以维持 I 型 NB 谱系的身份。在镶嵌分析中使用可抑制细胞标记物 (MARCM) 的 insc I 型 NB 克隆中,观察到额外的 Deadpan (Dpn) NB 样和 GMC 样细胞的形成。Insc 的缺失导致 Numb 在不对称细胞分裂过程中的定位和分离缺陷。在胞质分裂末期,这导致 GMC 中 Numb 不足。通过 Notch 活性的衰减,可以防止 insc 克隆中额外的 Deadpan (Dpn) 细胞的形成。这表明 Insc 通过 Numb/Notch 信号通路发挥作用。我们还表明,在 I 型 NB 谱系中缺乏 Insc 时,GMC 的细胞身份发生改变,它们表现出 INP 样细胞命运,表现为 Dpn 表达的开始伴随着 Earmuff (Erm) 的短暂存在。这些 INP 样细胞具有多次分裂的能力。我们得出结论,Insc 对于维持 I 型 NB 谱系的身份是必要的。在幼虫大脑中过度增殖的 II 型 NB 中消除大多数 I 型 NB 的遗传操作导致昼夜节律改变和成年果蝇光趋性缺陷。这表明 NB 谱系的同源发生对于成年大脑功能很重要。