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首页> 外文期刊>Molecular and Cellular Biochemistry: An International Journal for Chemical Biology >The bacterial adaptive response gene, barA, encodes a novel conserved histidine kinase regulatory switch for adaptation and modulation of metabolism in Escherichia coli
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The bacterial adaptive response gene, barA, encodes a novel conserved histidine kinase regulatory switch for adaptation and modulation of metabolism in Escherichia coli

机译:细菌适应性反应基因barA编码一种新型保守的组氨酸激酶调节开关,用于大肠杆菌的代谢适应和调节

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摘要

Histidine kinases are important prokaryotic determinants of cellular adaptation to environmental conditions, particularly stress. The highly conserved histidine kinase, BarA, encoded by the bacterial adaptive response gene, barA, is a member of the family of tripartite histidine kinases, and is involved in stress adaptation. BarA has been implicated to play a role during infection of epithelial cells. Homologues and orthologues of BarA have been found in pathogenic yeast, fungi, mould and in plants. The primary aim of this review is to assimilate evidence present in the current literature linking the role of BarA in stress response, and to support it with preliminary experimental evidence indicating that, it is indeed a global response regulator. In particular, the review focuses on the unusual domain structure of the BarA protein, its role in oxidative, weak acid, and osmotic stress responses and its role in biofilm formation. A preliminary genomic approach to identify downstream genes regulated by the BarA signaling pathway, using DNA microarray, is reported. The results demonstrate that BarA plays a global response regulatory role in cell division, carbon metabolism, iron metabolism and pili formation. The evolutionary significance of these types of histidine kinase sensors is reviewed in light of their roles in pathogenesis.
机译:组氨酸激酶是细胞适应环境条件,特别是应激的重要原核决定因素。由细菌适应性反应基因barA编码的高度保守的组氨酸激酶BarA是三方组氨酸激酶家族的一员,参与应激适应。已经暗示BarA在上皮细胞感染期间起作用。在致病性酵母,真菌,霉菌和植物中发现了BarA的同源物和直向同源物。这篇综述的主要目的是吸收现有文献中与BarA在压力反应中的作用相关的证据,并以表明它确实是全球反应调节剂的初步实验证据来支持它。特别地,该综述集中于BarA蛋白的异常结构域结构,其在氧化,弱酸和渗透应激反应中的作用及其在生物膜形成中的作用。报道了使用DNA微阵列鉴定由BarA信号传导途径调控的下游基因的初步基因组学方法。结果表明,BarA在细胞分裂,碳代谢,铁代谢和菌毛形成中起着全球性的反应调节作用。根据它们在发病机理中的作用,综述了这些类型的组氨酸激酶传感器的进化意义。

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