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General transcription factor specified global gene regulation in archaea

机译:通用转录因子指定古细菌中的全球基因调控

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摘要

Cells responding to dramatic environmental changes or undergoing a developmental switch typically change the expression of numerous genes. In bacteria, σ factors regulate much of this process, whereas in eukaryotes, four RNA polymerases and a multiplicity of generalized transcription factors (GTFs) are required. Here, by using a systems approach, we provide experimental evidence (including protein-coimmunoprecipitation, ChIP-Chip, GTF perturbation and knockout, and measurement of transcrip-tional changes in these genetically perturbed strains) for how archaea likely accomplish similar large-scale transcriptional segregation and modulation of physiological functions. We are able to associate GTFs to nearly half of all putative promoters and show evidence for at least 7 of the possible 42 functional GTF pairs. This report represents a significant contribution toward closing the gap in our understanding of gene regulation by GTFs for all three domains of life and provides an example for how to use various experimental techniques to rapidly learn significant portions of a global gene regulatory network of organisms for which little has been previously known.
机译:响应环境急剧变化或经历发育转换的细胞通常会改变许多基因的表达。在细菌中,σ因子可调节此过程的大部分过程,而在真核生物中,则需要四种RNA聚合酶和多种广义转录因子(GTF)。在这里,通过使用系统方法,我们提供了实验证据(包括蛋白质共免疫沉淀,ChIP芯片,GTF扰动和敲除,以及这些遗传扰动菌株中转录变化的测量),证明古细菌如何完成类似的大规模转录生理功能的分离和调节。我们能够将GTF与所有推定启动子的近半数关联,并显示出可能的42种功能性GTF对中至少有7种的证据。这份报告代表了对弥补我们对生命的所有三个领域对GTF的基因调控的理解的巨大贡献,并提供了一个示例,说明了如何使用各种实验技术来快速了解生物的全球基因调控网络的重要组成部分,鲜为人知。

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