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DNA supercoiling is a fundamental regulatory principle in the control of bacterial gene expression

机译:DNA超螺旋是控制细菌基因表达的基本调控原理

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摘要

Although it has become routine to consider DNA in terms of its role as a carrier of genetic information, it is also an important contributor to the control of gene expression. This regulatory principle arises from its structural properties. DNA is maintained in an underwound state in most bacterial cells and this has important implications both for DNA storage in the nucleoid and for the expression of genetic information. Underwinding of the DNA through reduction in its linking number potentially imparts energy to the duplex that is available to drive DNA transactions, such as transcription, replication and recombination. The topological state of DNA also influences its affinity for some DNA binding proteins, especially in DNA sequences that have a high A + T base content. The underwinding of DNA by the ATP-dependent topoisomerase DNA gyrase creates a continuum between metabolic flux, DNA topology and gene expression that underpins the global response of the genome to changes in the intracellular and external environments. These connections describe a fundamental and generalised mechanism affecting global gene expression that underlies the specific control of transcription operating through conventional transcription factors. This mechanism also provides a basal level of control for genes acquired by horizontal DNA transfer, assisting microbial evolution, including the evolution of pathogenic bacteria.
机译:尽管从DNA作为遗传信息载体的角度考虑DNA已成为常规做法,但它还是控制基因表达的重要因素。该调节原理源于其结构性质。在大多数细菌细胞中,DNA处于未缠绕状态,这对于DNA在核苷酸中的存储以及遗传信息的表达都具有重要意义。通过减少其连接数来减少DNA的潜在缠绕可能将能量赋予可用于驱动DNA交易(例如转录,复制和重组)的双链体。 DNA的拓扑状态还影响其对某些DNA结合蛋白的亲和力,尤其是在具有高A + T碱基含量的DNA序列中。 ATP依赖的拓扑异构酶DNA回旋酶对DNA的不利影响在代谢通量,DNA拓扑结构和基因表达之间创建了一个连续体,从而巩固了基因组对细胞内和外部环境变化的整体响应。这些联系描述了影响全局基因表达的基本和普遍机制,该机制奠定了通过常规转录因子进行转录的特异性控制的基础。这种机制还为通过水平DNA转移获得的基因提供了基础控制,有助于微生物进化,包括致病细菌的进化。

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