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首页> 外文期刊>Molecular biology of the cell >A Highlights from MBoC Selection: Mitotic regulation of fungal cell-to-cell connectivity through septal pores involves the NIMA kinase
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A Highlights from MBoC Selection: Mitotic regulation of fungal cell-to-cell connectivity through septal pores involves the NIMA kinase

机译:MBoC选择的亮点:通过间隔孔对真菌细胞间连接的有丝分裂调控涉及NIMA激酶

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Intercellular bridges are a conserved feature of multicellular organisms. In multicellular fungi, cells are connected directly via intercellular bridges called septal pores. Using Aspergillus nidulans , we demonstrate for the first time that septal pores are regulated to be opened during interphase but closed during mitosis. Septal pore–associated proteins display dynamic cell cycle–regulated locations at mature septa. Of importance, the mitotic NIMA kinase locates to forming septa and surprisingly then remains at septa throughout interphase. However, during mitosis, when NIMA transiently locates to nuclei to promote mitosis, its levels at septa drop. A model is proposed in which NIMA helps keep septal pores open during interphase and then closed when it is removed from them during mitosis. In support of this hypothesis, NIMA inactivation is shown to promote interphase septal pore closing. Because NIMA triggers nuclear pore complex opening during mitosis, our findings suggest that common cell cycle regulatory mechanisms might control septal pores and nuclear pores such that they are opened and closed out of phase to each other during cell cycle progression. The study provides insights into how and why cytoplasmically connected Aspergillus cells maintain mitotic autonomy.
机译:细胞间桥是多细胞生物的保守特征。在多细胞真菌中,细胞通过称为间隔孔的细胞间桥直接连接。使用构巢曲霉,我们首次证明间隔孔被调节为在相间开放,而在有丝分裂期间被封闭。隔孔相关蛋白在成熟隔中显示动态细胞周期调控的位置。重要的是,有丝分裂的NIMA激酶定位于形成隔膜,然后出人意料地在整个相间停留在隔膜上。但是,在有丝分裂过程中,当NIMA短暂定位于核以促进有丝分裂时,其隔垫水平会下降。提出了一种模型,其中NIMA有助于在间隔期使间隔孔保持打开状态,并在有丝分裂期间将其从间隔孔中移除时将其封闭。为了支持这一假设,NIMA失活被证明可促进相间隔的毛孔闭合。由于NIMA在有丝分裂过程中触发了核孔复合体的开放,因此我们的发现表明,常见的细胞周期调节机制可能会控制间隔孔和核孔,从而使它们在细胞周期进程中彼此异相地打开和关闭。该研究为细胞质连接的曲霉细胞如何以及为何保持有丝分裂自主性提供了见识。

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