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SOS 应答中 LexA 调控基因之间关系的阐明。

Elucidation of the relationships between LexA-regulated genes in the SOS response.

作者信息

Aburatani Sachiyo, Horimoto Katsuhisa

机构信息

Laboratory of Biostatistics, Institute of Medical Science, University of Tokyo, Shirokane-dai 4-6-1, Minato-ku, Tokyo 108-8639, Japan.

出版信息

Genome Inform. 2005;16(1):95-105.

Abstract

Monitoring the expression of many genes under different conditions is a common approach for investigating gene relationships. In particular, the monitoring sheds light on the biological phenomena in which many genes are coordinately expressed. In this study, we analyzed the expression profiles of LexA-regulated genes after UV irradiation, to elucidate the genes related to the SOS response, which involves coordinately regulated gene expression. By the two-gene relationship analysis, the LexA-regulated genes were highly correlated with the genes involved in the DNA repair functions. The LexA-regulated genes with highly significant probability were divided into two groups: the LexA-regulated genes that were mutually related within them were related to the genes with DNA repair functions, while the LexA-regulated genes that were less related within them showed lower relation to the genes with DNA repair functions. By a multiple gene relationship analysis, the two types of LexA-regulated genes were clearly clustered, and the inferred network between the clusters indicated their sequential relationship of clusters in the two groups of LexA-regulated genes in the SOS response; the former type of genes emerged in the early stage of the SOS response upon the signal transduction by membrane proteins, cessation of cell division and recognition of DNA damage, and the latter type emerged in a later stage, and functioned in the repair mechanism and the resumption of DNA replication.

摘要

监测不同条件下许多基因的表达是研究基因关系的常用方法。特别是,这种监测揭示了许多基因协同表达的生物学现象。在本研究中,我们分析了紫外线照射后LexA调控基因的表达谱,以阐明与SOS反应相关的基因,SOS反应涉及基因表达的协同调控。通过双基因关系分析,LexA调控基因与参与DNA修复功能的基因高度相关。具有高度显著概率的LexA调控基因分为两组:组内相互关联的LexA调控基因与具有DNA修复功能的基因相关,而组内相关性较低的LexA调控基因与具有DNA修复功能的基因的相关性较低。通过多基因关系分析,两种类型的LexA调控基因明显聚类,聚类之间推断的网络表明它们在SOS反应中两组LexA调控基因聚类的顺序关系;前一种类型的基因在SOS反应的早期阶段通过膜蛋白的信号转导、细胞分裂停止和DNA损伤识别而出现,后一种类型在后期出现,并在修复机制和DNA复制恢复中发挥作用。

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