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Regulation of lysine biosynthesis and transport genes in bacteria: yet another RNA riboswitch?

机译:细菌中赖氨酸生物合成和转运基因的调控:另一个RNA核糖开关?

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摘要

Comparative analysis of genes, operons and regulatory elements was applied to the lysine biosynthetic pathway in available bacterial genomes. We report identification of a lysine-specific RNA element, named the LYS element, in the regulatory regions of bacterial genes involved in biosynthesis and transport of lysine. Similarly to the previously described RNA regulatory elements for three vitamins (riboflavin, thiamin and cobalamin), purine and methionine regulons, this regulatory RNA structure is highly conserved on the sequence and structural levels. The LYS element includes regions of lysine-constitutive mutations previously identified in Escherichia coli and Bacillus subtilis. A possible mechanism of the lysine-specific riboswitch is similar to the previously defined mechanisms for the other metabolite-specific riboswitches and involves either transcriptional or translational attenuation in various groups of bacteria. Identification of LYS elements in Gram-negative γ-proteobacteria, Gram-positive bacteria from the Bacillus/Clostridium group, and Thermotogales resulted in description of the previously uncharacterized lysine regulon in these bacterial species. Positional analysis of LYS elements led to identification of a number of new candidate lysine transporters, namely LysW, YvsH and LysXY. Finally, the most likely candidates for genes of lysine biosynthesis missing in Gram- positive bacteria were identified using the genome context analysis.
机译:将基因,操纵子和调控元件的比较分析应用于可用细菌基因组中的赖氨酸生物合成途径。我们报告了赖氨酸特异性RNA元件,称为LYS元件,在参与生物合成和赖氨酸运输的细菌基因的调控区域的鉴定。类似于先前描述的三种维生素(核黄素,硫胺素和钴胺素),嘌呤和蛋氨酸调节剂的RNA调控元件,该调控RNA结构在序列和结构水平上高度保守。 LYS元件包括先前在大肠杆菌和枯草芽孢杆菌中鉴定的赖氨酸组成性突变区域。赖氨酸特异性核糖开关的可能机制与其他代谢物特异性核糖开关的先前定义的机制相似,并且涉及各种细菌组中的转录或翻译减毒。对革兰氏阴性γ-变形杆菌,芽孢杆菌/梭状芽孢杆菌组的革兰氏阳性细菌和嗜热菌的LYS元素的鉴定导致了这些细菌物种中以前未表征的赖氨酸调节子的描述。 LYS元素的位置分析导致鉴定了许多新的候选赖氨酸转运蛋白,即LysW,YvsH和LysXY。最后,使用基因组背景分析确定了革兰氏阳性细菌中赖氨酸生物合成基因最可能的候选基因。

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