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作用规则:封闭有丝分裂系统中的中心体-核连接。

Rules of engagement: centrosome-nuclear connections in a closed mitotic system.

机构信息

Division of Translational Medicine, Wadsworth Center, New York State Department of Health , Albany, NY 12201-0509 , USA.

出版信息

Biol Open. 2012 Nov 15;1(11):1111-7. doi: 10.1242/bio.20122188. Epub 2012 Sep 4.

Abstract

The assembly of a functional mitotic spindle is essential for cell reproduction and requires a precise coordination between the nuclear cycle and the centrosome. This coordination is particularly prominent in organisms that undergo closed mitosis where centrosomes must not only respond to temporal signals, but also to spatial considerations, e.g. switching from the production of cytoplasmic microtubule arrays to the generation of dynamic intra-nuclear microtubules required for spindle assembly. We utilize a gene knockout of Kif9, a Dictyostelium discoideum Kin-I kinesin, to destabilize the physical association between centrosomes and the nuclear envelope. This approach presents a unique opportunity to reveal temporal and spatial components in the regulation of centrosomal activities in a closed-mitosis organism. Here we report that centrosome-nuclear engagement is not required for the entry into mitosis. Although detached centrosomes can duplicate in the cytoplasm, neither they nor nuclei alone can produce spindle-like microtubule arrays. However, the physical association of centrosomes and the nuclear envelope is required to progress through mitosis beyond prometaphase.

摘要

有丝分裂纺锤体的组装对于细胞繁殖至关重要,需要核周期和中心体之间的精确协调。这种协调在经历封闭有丝分裂的生物中尤为明显,在这些生物中,中心体不仅必须对时间信号做出反应,还必须对空间因素做出反应,例如从细胞质微管阵列的产生转换为为组装纺锤体所需的动态核内微管的产生。我们利用 Dictyostelium discoideum Kin-I 驱动蛋白 Kif9 的基因敲除来破坏中心体和核膜之间的物理关联。这种方法为揭示封闭有丝分裂生物中中心体活性的时空调节成分提供了独特的机会。在这里,我们报告说,进入有丝分裂并不需要中心体-核结合。尽管分离的中心体可以在细胞质中复制,但它们和细胞核本身都不能产生类似于纺锤体的微管阵列。然而,中心体和核膜的物理关联对于有丝分裂进入后期是必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/65a4/3507195/f3b4fb6720ed/bio-01-11-1111-f01.jpg

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