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杂合型Plk4小鼠胚胎成纤维细胞中的基因表达模式

Gene expression patterns in heterozygous Plk4 murine embryonic fibroblasts.

作者信息

Morettin Alan, Ward Alejandra, Nantais Jordan, Hudson John W

机构信息

Department of Biological Sciences, University of Windsor, Windsor, Ontario, Canada.

出版信息

BMC Genomics. 2009 Jul 16;10:319. doi: 10.1186/1471-2164-10-319.

Abstract

BACKGROUND

The polo-like kinases (Plks) are a group of serine/threonine kinases which have roles in many aspects of cellular function including the regulation of mitotic activity and cellular stress responses. This study focuses on Plk4, the most divergent member of the Plk family, which is necessary for proper cellular proliferation. More specifically, alterations in Plk4 levels cause significantly adverse mitotic defects including abnormal centrosome duplication and aberrant mitotic spindle formation. We sought to clarify the effect of reduced Plk4 levels on the cell by examining transcript profiles of Plk4 wild-type and heterozygous mouse embryonic fibroblasts (MEFs). Subsequently, the levels of several key proteins involved in the DNA damage response were examined.

RESULTS

143 genes were found to be significantly up-regulated in the heterozygous MEFs compared to their wild-type counterparts, while conversely, 9 genes were down-regulated. Numerous genes with increased transcript levels in heterozygous MEFs were identified to be involved in p53-dependent pathways. Furthermore, examination of the promoter regions of all up- and down-regulated genes revealed that the majority contained putative p53 responsive elements. An analysis of transcript levels in MEFs after exposure to either ionizing or ultraviolet radiation revealed a significant change between wild type and heterozygous MEFS for Plk4 transcript levels upon only UV exposure. Furthermore, changes in protein levels of several important cell check-point and apoptosis regulators were examined, including p53, Chk1, Chk2, Cdc25C and p21. In heterozygous MEFs, p53, p21 and Chk2 protein levels were at significantly higher levels. Furthermore, p53 activity was increased 5 fold in the Plk4 heterozygous MEFs.

CONCLUSION

Global transcript profiles and levels of key proteins involved in cellular proliferation and DNA damage pathways were examined in wild-type and Plk4 heterozygous MEFs. It was determined that Plk4 haploinsufficiency leads to changes in the levels of RNA accumulation for a number of key cellular genes as well as changes in protein levels for several important cell cycle/DNA damage proteins. We propose a model in which reduced Plk4 levels invoke an increase in p53 levels that leads to the aforementioned changes in global transcription profiles.

摘要

背景

polo样激酶(Plks)是一组丝氨酸/苏氨酸激酶,在细胞功能的许多方面发挥作用,包括有丝分裂活性的调节和细胞应激反应。本研究聚焦于Plk4,它是Plk家族中差异最大的成员,对细胞正常增殖至关重要。更具体地说,Plk4水平的改变会导致明显的不良有丝分裂缺陷,包括异常的中心体复制和异常的有丝分裂纺锤体形成。我们试图通过检测Plk4野生型和杂合型小鼠胚胎成纤维细胞(MEFs)的转录谱来阐明Plk4水平降低对细胞的影响。随后,检测了参与DNA损伤反应的几种关键蛋白的水平。

结果

与野生型MEFs相比,发现杂合型MEFs中有143个基因显著上调,相反,有9个基因下调。在杂合型MEFs中转录水平增加的许多基因被确定参与p53依赖的途径。此外,对所有上调和下调基因的启动子区域进行检测发现,大多数都含有假定的p53反应元件。对暴露于电离辐射或紫外线辐射后的MEFs转录水平进行分析发现,仅在紫外线暴露后,野生型和杂合型MEFs之间Plk4转录水平有显著变化。此外,检测了几种重要的细胞检查点和凋亡调节因子的蛋白水平变化,包括p53、Chk1、Chk2、Cdc25C和p21。在杂合型MEFs中,p53、p21和Chk2蛋白水平显著更高。此外,在Plk4杂合型MEFs中p53活性增加了5倍。

结论

检测了野生型和Plk4杂合型MEFs中参与细胞增殖和DNA损伤途径的全局转录谱和关键蛋白水平。确定Plk4单倍体不足导致许多关键细胞基因的RNA积累水平发生变化,以及几种重要的细胞周期/DNA损伤蛋白的蛋白水平发生变化。我们提出了一个模型,其中Plk4水平降低导致p53水平升高,进而导致上述全局转录谱的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d54e/2727538/9177399f6bfb/1471-2164-10-319-1.jpg

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