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The ilvGMEDA Operon Is Regulated by Transcription Attenuation in Vibrio alginolyticus ZJ-T

机译:ilvGMEDA 操纵子受溶藻弧菌 ZJ-T 转录衰减的调节

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摘要

Bacteria synthesize amino acids according to their availability in the environment or, in the case of pathogens, within the host. We explored the regulation of the biosynthesis of branched-chain amino acids (BCAAs) (L-leucine, L-valine, and L-isoleucine) in Vibrio alginolyticus, a marine fish and shellfish pathogen and an emerging opportunistic human pathogen. In this species, the ilvGMEDA operon encodes the main pathway for biosynthesis of BCAAs. Its upstream regulatory region shows no sequence similarity to the corresponding region in Escherichia coli or other Enterobacteriaceae, and yet we show that this operon is regulated by transcription attenuation. The translation of a BCAA-rich peptide encoded upstream of the structural genes provides an adaptive response similar to the E. coli canonical model. This study of a nonmodel Gram-negative organism highlights the mechanistic conservation of transcription attenuation despite the absence of primary sequence conservation.
机译:细菌根据氨基酸在环境中的可用性合成氨基酸,或者在病原体的情况下,在宿主内合成氨基酸。我们探索了支链氨基酸 (BCAA)(L-亮氨酸、L-缬氨酸和 L-异亮氨酸)在海藻弧菌(一种海洋鱼类和贝类病原体和一种新兴的机会性人类病原体)中生物合成的调控。在该物种中,ilvGMEDA 操纵子编码 BCAA 生物合成的主要途径。它的上游调控区与大肠杆菌或其他肠杆菌科的相应区域没有序列相似性,但我们发现该操纵子受转录衰减的调控。编码结构基因上游的富含BCAA的肽的翻译提供了类似于大肠杆菌经典模型的适应性反应。这项对非模型 Gram 阴性生物的研究强调了转录衰减的机制保守性,尽管缺乏一级序列保守性。

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