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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Organization of early frog embryos by chemical waves emanating from centrosomes
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Organization of early frog embryos by chemical waves emanating from centrosomes

机译:通过中心体发出的化学波来组织早期青蛙胚胎

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摘要

The large cells in early vertebrate development face an extreme physical challenge in organizing their cytoplasm. For example, amphibian embryos have to divide cytoplasm that spans hundreds of micrometres every 30 min according to a precise geometry, a remarkable accomplishment given the extreme difference between molecular and cellular scales in this system. How do the biochemical reactions occurring at the molecular scale lead to this emergent behaviour of the cell as awhole? Based on recent findings,we propose that the centrosome plays a crucial role by initiating two autocatalytic reactions that travel across the large cytoplasm as chemical waves. Waves of mitotic entry and exit propagate out from centrosomes using the Cdk1 oscillator to coordinate the timing of cell division. Waves of microtubule-stimulated microtubule nucleation propagate out to assemble large asters that position spindles for the following mitosis and establish cleavage plane geometry. By initiating these chemical waves, the centrosome rapidly organizes the large cytoplasm during the short embryonic cell cycle, which would be impossible using more conventional mechanisms such as diffusion or nucleation by structural templating. Large embryo cells provide valuable insights to how cells control chemical waves, which may be a general principle for cytoplasmic organization.
机译:脊椎动物早期发育中的大细胞在组织其细胞质方面面临极端的物理挑战。例如,两栖动物的胚胎必须根据精确的几何形状每30分钟将跨越数百微米的细胞质分开,鉴于此系统中分子和细胞尺度之间的极端差异,这是一项了不起的成就。在分子水平发生的生化反应如何导致整个细胞的这种新出现的行为?基于最近的发现,我们建议中心体通过引发两个自催化反应起关键作用,所述自催化反应作为化学波穿越大细胞质。使用Cdk1振荡器协调细胞分裂的时间,有丝分裂进入和离开的波从中心体传播出去。微管刺激的微管成核波传播出去,组装成大的紫that,将其定位在随后有丝分裂的纺锤体上,并建立分裂平面的几何形状。通过启动这些化学波,中心体在短的胚胎细胞周期中迅速组织了大的细胞质,而使用更常规的机制(例如通过结构模板进行扩散或成核)则不可能。大型胚胎细胞为细胞如何控制化学波提供了宝贵的见识,这可能是细胞质组织的一般原理。

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