Mora-Bermúdez Felipe, Matsuzaki Fumio, Huttner Wieland B
Max Planck Institute of Molecular Cell Biology and Genetics, Dresden, Germany.
RIKEN Center for Developmental Biology, Kobe, Japan.
Elife. 2014 Jul 4;3:e02875. doi: 10.7554/eLife.02875.
Mitotic spindle orientation is crucial for symmetric vs asymmetric cell division and depends on astral microtubules. Here, we show that distinct subpopulations of astral microtubules exist, which have differential functions in regulating spindle orientation and division symmetry. Specifically, in polarized stem cells of developing mouse neocortex, astral microtubules reaching the apical and basal cell cortex, but not those reaching the central cell cortex, are more abundant in symmetrically than asymmetrically dividing cells and reduce spindle orientation variability. This promotes symmetric divisions by maintaining an apico-basal cleavage plane. The greater abundance of apical/basal astrals depends on a higher concentration, at the basal cell cortex, of LGN, a known spindle-cell cortex linker. Furthermore, newly developed specific microtubule perturbations that selectively decrease apical/basal astrals recapitulate the symmetric-to-asymmetric division switch and suffice to increase neurogenesis in vivo. Thus, our study identifies a novel link between cell polarity, astral microtubules, and spindle orientation in morphogenesis.
有丝分裂纺锤体的定向对于细胞的对称与不对称分裂至关重要,且依赖于星体微管。在此,我们表明存在不同的星体微管子群体,它们在调节纺锤体定向和分裂对称性方面具有不同功能。具体而言,在发育中的小鼠新皮质的极化干细胞中,到达顶端和基底细胞皮质的星体微管,而非到达中央细胞皮质的星体微管,在对称分裂细胞中比在不对称分裂细胞中更为丰富,并减少纺锤体定向的变异性。这通过维持顶 - 基底分裂平面促进对称分裂。顶端/基底星体微管数量更多取决于基底细胞皮质处LGN(一种已知的纺锤体 - 细胞皮质连接蛋白)的更高浓度。此外,新开发的特异性微管扰动可选择性减少顶端/基底星体微管,重现从对称到不对称分裂的转变,并且足以在体内增加神经发生。因此,我们的研究确定了细胞极性、星体微管和形态发生中纺锤体定向之间的一种新联系。