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Interkinetic Nuclear Migration Is a Broadly Conserved Feature of Cell Division in Pseudostratified Epithelia

机译:动力学间的核迁移是伪分层上皮细胞分裂的广泛保守的特征。

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Animal development requires tight integration between the processes of proliferative growth and epithelial morphogenesis, both of which play out at the level of individual cells. In this respect, not only must polarized epithelial cells assume complex morphologies, these distinct forms must be radically and repeatedly transformed to permit mitosis. A dramatic illustration of this integration between epithelial morphogenesis and cell proliferation is interkinetic nuclear migration (IKNM), wherein the nuclei of pseudostratified epithelial cells translocate to the apical epithelial surface to execute cell division [1, 2]. IKNM is widely considered a hallmark of pseudostratified vertebrate neuroepithelia, and prior investigations have proposed both actomyosin- and microtubule-dependent mechanisms for apical localization of the mitotic nucleus [3-8]. Here, using comparative functional analysis in arthropod and cnidarian systems (Drosophila melanogaster and Nematostella vectensis), we show that actomyosin-dependent IKNM is likely to be a general feature of mitosis in pseudostratified epithelia throughout Eumetazoa. Furthermore, our studies suggest a mechanistic link between IKNM and the fundamental process of mitotic cell rounding.
机译:动物的发育需要在增生过程和上皮形态发生过程之间紧密结合,两者都在单个细胞的水平上发挥作用。在这方面,极化的上皮细胞不仅必须具有复杂的形态,而且这些独特的形式必须被彻底和反复地转化以允许有丝分裂。上皮形态发生与细胞增殖之间的这种整合的一个生动例证是动代核迁移(IKNM),其中伪分层上皮细胞的核易位至顶上皮表面以进行细胞分裂[1、2]。 IKNM被广泛认为是伪分层脊椎动物神经上皮的标志,并且先前的研究提出了放线菌素和微管依赖的机制,用于有丝分裂核的顶端定位[3-8]。在这里,使用节肢动物和刺胞系统(果蝇和线虫线虫)中的比较功能分析,我们表明放线菌素依赖性IKNM可能是整个Eumetazoa假层状上皮细胞有丝分裂的普遍特征。此外,我们的研究表明IKNM和有丝分裂细胞舍入的基本过程之间的机制联系。

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