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首页> 外文期刊>Molecular biology of the cell >An InCytes from MBC Selection: Nucleolar Separation from Chromosomes during Aspergillus nidulans Mitosis Can Occur Without Spindle Forces
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An InCytes from MBC Selection: Nucleolar Separation from Chromosomes during Aspergillus nidulans Mitosis Can Occur Without Spindle Forces

机译:MBC选择中的InCytes:在构巢曲霉的有丝分裂过程中,可以在没有主轴力的情况下从染色体中分离核仁

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How the nucleolus is segregated during mitosis is poorly understood and occurs by very different mechanisms during closed and open mitosis. Here we report a new mechanism of nucleolar segregation involving removal of the nucleolar-organizing regions (NORs) from nucleoli during Aspergillus nidulans mitosis. This involves a double nuclear envelope (NE) restriction which generates three NE-associated structures, two daughter nuclei (containing the NORs), and the nucleolus. Therefore, a remnant nucleolar structure can exist in the cytoplasm without NORs. In G1, this parental cytoplasmic nucleolus undergoes sequential disassembly releasing nucleolar proteins to the cytoplasm as nucleoli concomitantly reform in daughter nuclei. By depolymerizing microtubules and mutating spindle assembly checkpoint function, we demonstrate that a cycle of nucleolar “segregation” can occur without a spindle in a process termed spindle-independent mitosis (SIM). During SIM physical separation of the NOR from the nucleolus occurs, and NE modifications promote expulsion of the nucleolus to the cytoplasm. Subsequently, the cytoplasmic nucleolus is disassembled and rebuilt at a new site around the nuclear NOR. The data demonstrate the existence of a mitotic machinery for nucleolar segregation that is normally integrated with mitotic spindle formation but that can function without it.
机译:核仁如何在有丝分裂过程中被隔离,人们对此了解甚少,在封闭和开放有丝分裂过程中,核仁的发生机制非常不同。在这里,我们报告核仁分离的一种新机制,涉及在构巢曲霉的有丝分裂过程中从核仁中去除核仁组织区(NORs)。这涉及双核包膜(NE)限制,它产生三个与NE相关的结构,两个子核(包含NOR)和核仁。因此,在没有NOR的细胞质中可以存在残留的核仁结构。在G1中,此亲本胞质核仁经历顺序分解,随着核仁伴随子核的重整而将核仁蛋白释放到胞质中。通过解聚微管和突变纺锤体装配检查点功能,我们证明了在没有纺锤体的过程中,核仁“分离”的循环可以发生,这一过程称为纺锤体非依赖性有丝分裂(SIM)。在SIM期间,发生NOR与核仁的物理分离,并且NE修饰促进了核仁向细胞质的排出。随后,将胞质核仁分解并在核NOR周围的新位点重建。数据证明存在用于核仁分离的有丝分裂机制,该机制通常与有丝分裂纺锤体形成整合在一起,但没有它就可以起作用。

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