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使用大肠杆菌脱氢酶作为模型的基因调控中的动态交互事件。

Dynamic interactive events in gene regulation using E. coli dehydrogenase as a model.

机构信息

Environmental Genomics Division, CSIR-National Environmental Engineering Research Institute, 440020, Nehru Marg, India.

出版信息

Funct Integr Genomics. 2015 Mar;15(2):175-88. doi: 10.1007/s10142-014-0418-8. Epub 2014 Nov 30.

Abstract

Different approaches in gene expression analysis always provide a snapshot view of cellular events. During the bacterial growth, the decisions are dynamically made with participation of various genes and their interactions with modulating factors. We have selected Escherichia coli dehydrogenases as a model to capture these interactions. We have treated the cells with hydrogen peroxide with very low level and asked the questions how cellular physiology has modulated itself to survive post-shock conditions. We hypothesized that while global regulators and associated gene network dictate the overall cellular intelligence, specific redox-sensitive classes of enzymes like dehydrogenase-mediated modulation could provide the option to cell for survival under peroxide after-effect. To understand the dynamic gene interaction, we used multidimensional scaling of genes and overlaid with minimum spanning tree to understand the clustering patterns under different conditions. Study shows that under peroxide after-effect, it is the interplay of ArcA (global regulator), with ldhA (involved in intermediary metabolism) and ndh (managing co-factor NADH), that emerges as modulating association. Knockout mutants of global regulators confirmed the promoter activity trend through gene expression change for dehydrogenases.

摘要

不同的基因表达分析方法总是提供细胞事件的静态视图。在细菌生长过程中,各种基因及其与调节因子的相互作用参与了动态决策。我们选择大肠杆菌脱氢酶作为模型来捕捉这些相互作用。我们用非常低浓度的过氧化氢处理细胞,并提出了以下问题:细胞生理学如何调节自身以在冲击后条件下存活。我们假设,虽然全局调节剂和相关基因网络决定了整体细胞智能,但像脱氢酶介导的调节这样的特定氧化还原敏感类别的酶可以为细胞在过氧化作用后提供存活的选择。为了理解动态基因相互作用,我们使用多维尺度分析基因,并叠加最小生成树来理解不同条件下的聚类模式。研究表明,在过氧化作用后,ArcA(全局调节剂)与 ldhA(参与中间代谢)和 ndh(管理辅酶 NADH)的相互作用作为调节关联出现。全局调节剂的敲除突变体通过脱氢酶的基因表达变化证实了启动子活性趋势。

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