Molecular, Cell and Developmental Biology, University of Dundee, Dundee, United Kingdom.
MRC PPU, School of Life Sciences, University of Dundee, Dundee, United Kingdom.
Elife. 2024 Jun 13;13:e97902. doi: 10.7554/eLife.97902.
The generation of distinct cell fates during development depends on asymmetric cell division of progenitor cells. In the central and peripheral nervous system of progenitor cells respectively called neuroblasts or sensory organ precursors use PAR polarity during mitosis to control cell fate determination in their daughter cells. How polarity and the cell cycle are coupled, and how the cell cycle machinery regulates PAR protein function and cell fate determination is poorly understood. Here, we generate an analog sensitive allele of CDK1 and reveal that its partial inhibition weakens but does not abolish apical polarity in embryonic and larval neuroblasts and leads to defects in polarisation of fate determinants. We describe a novel in vivo phosphorylation of Bazooka, the homolog of PAR-3, on Serine180, a consensus CDK phosphorylation site. In some tissular contexts, phosphorylation of Serine180 occurs in asymmetrically dividing cells but not in their symmetrically dividing neighbours. In neuroblasts, Serine180 phosphomutants disrupt the timing of basal polarisation. Serine180 phosphomutants also affect the specification and binary cell fate determination of sensory organ precursors as well as Baz localisation during their asymmetric cell divisions. Finally, we show that CDK1 phosphorylates Serine-S180 and an equivalent Serine on human PAR-3 in vitro.
在发育过程中,不同细胞命运的产生依赖于祖细胞的不对称细胞分裂。在中枢和外周神经系统中,分别称为神经母细胞或感觉器官前体细胞的祖细胞在有丝分裂过程中利用 PAR 极性来控制其子细胞中的细胞命运决定。极性和细胞周期如何偶联,以及细胞周期机制如何调节 PAR 蛋白功能和细胞命运决定,这些问题仍知之甚少。在这里,我们生成了一个 CDK1 的模拟敏感等位基因,并揭示其部分抑制虽然削弱了但并没有完全消除胚胎和幼虫神经母细胞中的顶端极性,并导致命运决定因素极化的缺陷。我们描述了 Bazooka 的一个新的体内磷酸化,Bazooka 是 PAR-3 的同源物,磷酸化发生在丝氨酸 180 上,这是一个公认的 CDK 磷酸化位点。在某些组织环境中,丝氨酸 180 的磷酸化发生在不对称分裂的细胞中,但不在其对称分裂的邻居中。在神经母细胞中,丝氨酸 180 磷酸突变体破坏了基底极化的时间。丝氨酸 180 磷酸突变体还影响感觉器官前体细胞的特化和二元细胞命运决定,以及它们不对称细胞分裂过程中的 Baz 定位。最后,我们表明 CDK1 在体外磷酸化丝氨酸-S180 和人 PAR-3 上的等效丝氨酸。