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出芽酵母Ipl1/极光蛋白激酶调节有丝分裂纺锤体的解体。

The budding yeast Ipl1/Aurora protein kinase regulates mitotic spindle disassembly.

作者信息

Buvelot Stéphanie, Tatsutani Sean Y, Vermaak Danielle, Biggins Sue

机构信息

Fred Hutchinson Cancer Research Center, Seattle, WA 98109, USA.

出版信息

J Cell Biol. 2003 Feb 3;160(3):329-39. doi: 10.1083/jcb.200209018.

Abstract

Ipl1p is the budding yeast member of the Aurora family of protein kinases, critical regulators of genomic stability that are required for chromosome segregation, the spindle checkpoint, and cytokinesis. Using time-lapse microscopy, we found that Ipl1p also has a function in mitotic spindle disassembly that is separable from its previously identified roles. Ipl1-GFP localizes to kinetochores from G1 to metaphase, transfers to the spindle after metaphase, and accumulates at the spindle midzone late in anaphase. Ipl1p kinase activity increases at anaphase, and ipl1 mutants can stabilize fragile spindles. As the spindle disassembles, Ipl1p follows the plus ends of the depolymerizing spindle microtubules. Many Ipl1p substrates colocalize with Ipl1p to the spindle midzone, identifying additional proteins that may regulate spindle disassembly. We propose that Ipl1p regulates both the kinetochore and interpolar microtubule plus ends to regulate its various mitotic functions.

摘要

Ipl1p是极光蛋白激酶家族在芽殖酵母中的成员,是基因组稳定性的关键调节因子,在染色体分离、纺锤体检查点和胞质分裂中发挥作用。通过延时显微镜观察,我们发现Ipl1p在有丝分裂纺锤体解体过程中也发挥作用,这一功能与其先前确定的作用不同。Ipl1-GFP从G1期到中期定位于动粒,中期后转移到纺锤体,并在后期晚期聚集在纺锤体中间区。Ipl1p激酶活性在后期增加,Ipl1突变体可稳定脆弱的纺锤体。随着纺锤体解体,Ipl1p沿着解聚的纺锤体微管的正端移动。许多Ipl1p底物与Ipl1p共定位于纺锤体中间区,确定了可能调节纺锤体解体的其他蛋白质。我们提出,Ipl1p通过调节动粒和极间微管正端来调控其各种有丝分裂功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce5a/2172676/52a7ad9d541c/200209018f1.jpg

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