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化学遗传学揭示了在人类细胞中定位RhoA和触发胞质分裂时对Polo样激酶1活性的需求。

Chemical genetics reveals the requirement for Polo-like kinase 1 activity in positioning RhoA and triggering cytokinesis in human cells.

作者信息

Burkard Mark E, Randall Catherine L, Larochelle Stéphane, Zhang Chao, Shokat Kevan M, Fisher Robert P, Jallepalli Prasad V

机构信息

Molecular Biology Program and Department of Medicine, Memorial Sloan-Kettering Cancer Center, 1275 York Avenue, New York, NY 10021, USA.

出版信息

Proc Natl Acad Sci U S A. 2007 Mar 13;104(11):4383-8. doi: 10.1073/pnas.0701140104. Epub 2007 Mar 6.

Abstract

Polo-like kinases (Plks) play crucial roles in mitosis and cell division. Whereas lower eukaryotes typically contain a single Plk, mammalian cells express several closely related but functionally distinct Plks. We describe here a chemical genetic system in which a single Plk family member, Plk1, can be inactivated with high selectivity and temporal resolution by using an allele-specific, small-molecule inhibitor, as well as the application of this system to dissect Plk1's role in cytokinesis. To do this, we disrupted both copies of the PLK1 locus in human cells through homologous recombination and then reconstituted Plk1 activity by using either the wild-type kinase (Plk1(wt)) or a mutant version whose catalytic pocket has been enlarged to accommodate bulky purine analogs (Plk1(as)). When cultured in the presence of these analogs, Plk1(as) cells accumulate in prometaphase with defects that parallel those found in PLK1(Delta/Delta) cells. In addition, acute treatment of Plk1(as) cells during anaphase prevents recruitment of both Plk1 itself and the Rho guanine nucleotide exchange factor (RhoGEF) Ect2 to the central spindle, abolishes RhoA GTPase localization to the equatorial cortex, and suppresses cleavage furrow formation and cell division. Our studies define and illuminate a late mitotic function of Plk1 that, although difficult or impossible to detect in Plk1-depleted cells, is readily revealed with chemical genetics.

摘要

Polo样激酶(Plks)在有丝分裂和细胞分裂中发挥着关键作用。低等真核生物通常只含有一种Plk,而哺乳动物细胞则表达几种密切相关但功能不同的Plks。我们在此描述一种化学遗传系统,其中单一的Plk家族成员Plk1可以通过使用等位基因特异性小分子抑制剂以高选择性和时间分辨率失活,以及该系统在剖析Plk1在胞质分裂中的作用方面的应用。为此,我们通过同源重组破坏了人类细胞中PLK1基因座的两个拷贝,然后通过使用野生型激酶(Plk1(wt))或其催化口袋已扩大以容纳庞大嘌呤类似物的突变体版本(Plk1(as))来重建Plk1活性。当在这些类似物存在的情况下培养时,Plk1(as)细胞在前中期积累,其缺陷与PLK1(Delta/Delta)细胞中的缺陷相似。此外,在后期对Plk1(as)细胞进行急性处理可阻止Plk1自身和Rho鸟嘌呤核苷酸交换因子(RhoGEF)Ect2募集到中央纺锤体,消除RhoA GTP酶定位于赤道皮质,并抑制分裂沟形成和细胞分裂。我们的研究定义并阐明了Plk1的一种有丝分裂后期功能,这种功能虽然在Plk1缺失的细胞中难以或无法检测到,但通过化学遗传学很容易揭示。

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