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利用系统生物学发现的细胞周期基因表达网络:在致癌作用中的意义。

Cell cycle gene expression networks discovered using systems biology: Significance in carcinogenesis.

作者信息

Scott Robert E, Ghule Prachi N, Stein Janet L, Stein Gary S

机构信息

Varigenix, Inc., Memphis, Tennessee.

Department of Biochemistry and University of Vermont Cancer Center, University of Vermont College of Medicine, Burlington, Vermont.

出版信息

J Cell Physiol. 2015 Oct;230(10):2533-42. doi: 10.1002/jcp.24990.

Abstract

The early stages of carcinogenesis are linked to defects in the cell cycle. A series of cell cycle checkpoints are involved in this process. The G1/S checkpoint that serves to integrate the control of cell proliferation and differentiation is linked to carcinogenesis and the mitotic spindle checkpoint is associated with the development of chromosomal instability. This paper presents the outcome of systems biology studies designed to evaluate if networks of covariate cell cycle gene transcripts exist in proliferative mammalian tissues including mice, rats, and humans. The GeneNetwork website that contains numerous gene expression datasets from different species, sexes, and tissues represents the foundational resource for these studies (www.genenetwork.org). In addition, WebGestalt, a gene ontology tool, facilitated the identification of expression networks of genes that co-vary with key cell cycle targets, especially Cdc20 and Plk1 (www.bioinfo.vanderbilt.edu/webgestalt). Cell cycle expression networks of such covariate mRNAs exist in multiple proliferative tissues including liver, lung, pituitary, adipose, and lymphoid tissues among others but not in brain or retina that have low proliferative potential. Sixty-three covariate cell cycle gene transcripts (mRNAs) compose the average cell cycle network with P = e(-13) to e(-36) . Cell cycle expression networks show species, sex and tissue variability, and they are enriched in mRNA transcripts associated with mitosis, many of which are associated with chromosomal instability.

摘要

癌症发生的早期阶段与细胞周期缺陷有关。一系列细胞周期检查点参与了这一过程。用于整合细胞增殖和分化控制的G1/S检查点与癌症发生有关,而有丝分裂纺锤体检查点与染色体不稳定性的发展有关。本文介绍了系统生物学研究的结果,旨在评估在包括小鼠、大鼠和人类在内的增殖性哺乳动物组织中是否存在协变量细胞周期基因转录本网络。包含来自不同物种、性别和组织的大量基因表达数据集的GeneNetwork网站是这些研究的基础资源(www.genenetwork.org)。此外,基因本体工具WebGestalt有助于识别与关键细胞周期靶点,特别是Cdc20和Plk1共变的基因表达网络(www.bioinfo.vanderbilt.edu/webgestalt)。这种协变量mRNA的细胞周期表达网络存在于包括肝脏、肺、垂体、脂肪和淋巴组织等多种增殖组织中,但不存在于增殖潜力低的脑或视网膜中。63个协变量细胞周期基因转录本(mRNA)组成了平均细胞周期网络,P = e(-13)至e(-36)。细胞周期表达网络表现出物种、性别和组织的变异性,并且它们在与有丝分裂相关的mRNA转录本中富集,其中许多与染色体不稳定性有关。

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