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在果蝇胚胎神经母细胞的第一个细胞周期后,纺锤体无需旋转即可实现对齐。

Spindle alignment is achieved without rotation after the first cell cycle in Drosophila embryonic neuroblasts.

作者信息

Rebollo Elena, Roldán Mónica, Gonzalez Cayetano

机构信息

Cell Division Group, IRB-Barcelona, PCB, Barcelona, Spain.

出版信息

Development. 2009 Oct;136(20):3393-7. doi: 10.1242/dev.041822. Epub 2009 Sep 17.

Abstract

Spindle alignment along the apicobasal polarity axis is mandatory for proper self-renewing asymmetric division in Drosophila neuroblasts (NBs). In embryonic NBs, spindles have been reported to assemble orthogonally to the polarity axis and later rotate to align with it. In larval NBs, spindles assemble directly aligned with the axis owing to the differential spatiotemporal control of the microtubule organising activity of their centrosomes. We have recorded embryonic NBs that express centrosome and microtubule reporters, from delamination up to the fourth cell cycle, by two-photon confocal microscopy, and have found that the switch between these two spindle orientation modes occurs in the second cell cycle of the NB, the first that follows delamination. Therefore, predetermined spindle orientation is not restricted to larval NBs. On the contrary, it actually applies to all but the first cell cycle of embryonic NBs.

摘要

在果蝇神经母细胞(NBs)中,纺锤体沿顶基极性轴排列对于适当的自我更新不对称分裂至关重要。据报道,在胚胎神经母细胞中,纺锤体与极性轴正交组装,随后旋转以与之对齐。在幼虫神经母细胞中,由于其中心体微管组织活性的时空差异控制,纺锤体直接与轴对齐组装。我们通过双光子共聚焦显微镜记录了从脱层到第四个细胞周期表达中心体和微管报告基因的胚胎神经母细胞,发现这两种纺锤体定向模式之间的转换发生在神经母细胞的第二个细胞周期,即脱层后的第一个细胞周期。因此,预定的纺锤体定向并不局限于幼虫神经母细胞。相反,它实际上适用于胚胎神经母细胞除第一个细胞周期之外的所有细胞周期。

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