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构巢曲霉在封闭有丝分裂过程中核孔复合体的部分解体

Partial nuclear pore complex disassembly during closed mitosis in Aspergillus nidulans.

作者信息

De Souza Colin P C, Osmani Aysha H, Hashmi Shahr B, Osmani Stephen A

机构信息

Department of Molecular Genetics, Ohio State University, Columbus, Ohio 43210, USA.

出版信息

Curr Biol. 2004 Nov 23;14(22):1973-84. doi: 10.1016/j.cub.2004.10.050.

Abstract

BACKGROUND

Many organisms undergo closed mitosis and locate tubulin and mitotic kinases to nuclei only during mitosis. How this is regulated is unknown. Interestingly, the NIMA kinase of Aspergillus nidulans interacts with two nuclear pore complex (NPC) proteins and NIMA is required for mitotic localization of the Cdk1 kinase to nuclei. Therefore, we wished to define the mechanism by which the NPC is regulated during A. nidulans' closed mitosis.

RESULTS

The structural makeup of the NPC is dramatically changed during A. nidulans' mitosis. At least five NPC proteins disperse throughout the cell during mitosis while at least three structural components remain at the NPC. These modifications correlate with marked changes in the function of the NPC. Notably, during mitosis, An-RanGAP is not excluded from nuclei, and five other nuclear or cytoplasmic proteins investigated fail to locate as they do during interphase. Mitotic modification of the NPC requires NIMA and Cdk1 kinase activation. NIMA appears to be particularly important. Most strikingly, ectopic induction of NIMA promotes mitotic-like changes in NPC structure and function during S phase. Furthermore, NIMA locates to the NPC during entry into mitosis, and a dominant-negative version of NIMA that causes G2 delay dwells at the NPC.

CONCLUSIONS

We conclude that partial NPC disassembly under control of NIMA and Cdk1 in A. nidulans may represent a new mechanism for regulating closed mitoses. We hypothesize that proteins locate by their relative binding affinities within the cell during A. nidulans' closed mitosis, analogous to what occurs during open mitosis.

摘要

背景

许多生物体进行封闭有丝分裂,仅在有丝分裂期间将微管蛋白和有丝分裂激酶定位到细胞核。其调控机制尚不清楚。有趣的是,构巢曲霉的NIMA激酶与两种核孔复合体(NPC)蛋白相互作用,并且NIMA是Cdk1激酶向细胞核有丝分裂定位所必需的。因此,我们希望确定在构巢曲霉封闭有丝分裂期间NPC的调控机制。

结果

在构巢曲霉有丝分裂期间,NPC的结构组成发生了显著变化。至少五种NPC蛋白在有丝分裂期间分散到整个细胞中,而至少三种结构成分保留在NPC处。这些修饰与NPC功能的显著变化相关。值得注意的是,在有丝分裂期间,An-RanGAP不被排除在细胞核外,并且所研究的其他五种核或细胞质蛋白在间期的定位方式与有丝分裂期间不同。NPC的有丝分裂修饰需要NIMA和Cdk1激酶激活。NIMA似乎尤为重要。最引人注目的是,异位诱导NIMA会在S期促进NPC结构和功能发生类似有丝分裂的变化。此外,NIMA在进入有丝分裂时定位到NPC,并且导致G2期延迟的NIMA显性负性版本驻留在NPC处。

结论

我们得出结论,在构巢曲霉中,在NIMA和Cdk1的控制下NPC的部分解体可能代表了一种调控封闭有丝分裂的新机制。我们假设在构巢曲霉封闭有丝分裂期间,蛋白质通过它们在细胞内的相对结合亲和力进行定位,这类似于开放有丝分裂期间发生的情况。

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