首页> 外文OA文献 >Escherichia coli Unsaturated Fatty Acid Synthesis: COMPLEX TRANSCRIPTION OF THE fabA GENE AND IN VIVO IDENTIFICATION OF THE ESSENTIAL REACTION CATALYZED BY FabB*
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Escherichia coli Unsaturated Fatty Acid Synthesis: COMPLEX TRANSCRIPTION OF THE fabA GENE AND IN VIVO IDENTIFICATION OF THE ESSENTIAL REACTION CATALYZED BY FabB*

机译:大肠杆菌不饱和脂肪酸的合成:fabA基因的复杂转录和通过FabB催化的基本反应的体内鉴定*

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摘要

Although the unsaturated fatty acid (UFA) synthetic pathway of Escherichia coli is the prototype of such pathways, several unresolved issues have accumulated over the years. The key players are the fabA and fabB genes. Earlier studies of fabA transcription showed that the gene was transcribed from two promoters, with one being positively regulated by the FadR protein. The other weaker promoter (which could not be mapped with the technology then available) was considered constitutive because its function was independent of FadR. However, the FabR negative regulator was recently shown to represses fabA transcription. We report that the weak promoter overlaps the FadR-dependent promoter and is regulated by FabR. This promoter is strictly conserved in all E. coli and Salmonella enterica genomes sequenced to date and is thought to provide insurance against inappropriate regulation of fabA transcription by exogenous saturated fatty acids. Also, the fabAup promoter, a mutant promoter previously isolated by selection for increased FabA activity, was shown to be a promoter created de novo by a four-base deletion within the gene located immediately upstream of fabA. Demonstration of the key UFA synthetic reaction catalyzed by FabB has been elusive, although it was known to catalyze an elongation reaction. Strains lacking FabB are UFA auxotrophs indicating that the enzyme catalyzes an essential step in UFA synthesis. Using thioesterases specific for hydrolysis of short chain acyl-ACPs, the intermediates of the UFA synthetic pathway have been followed in vivo for the first time. These experiments showed that a fabB mutant strain accumulated less cis-5-dodecenoic acid than the parental wild-type strain. These data indicate that the key reaction in UFA synthesis catalyzed by FabB is elongation of the cis-3-decenoyl-ACP produced by FabA.
机译:尽管大肠杆菌的不饱和脂肪酸(UFA)合成途径是此类途径的原型,但多年来积累了一些未解决的问题。关键参与者是fabA和fabB基因。 fabA转录的早期研究表明,该基因是从两个启动子转录而成,其中一个由FadR蛋白正调控。另一个较弱的启动子(无法用当时可用的技术作图)被认为是组成型启动子,因为其功能独立于FadR。但是,最近显示FabR负调节剂可抑制fabA转录。我们报告弱启动子重叠FadR依赖的启动子,并受FabR的监管。该启动子在迄今为止已测序的所有大肠杆菌和肠沙门氏菌基因组中均严格保守,并被认为可以提供保护,以防止外源性饱和脂肪酸对fabA转录的不当调节。而且,fabAup启动子是先前通过选择增加的FabA活性而通过选择而分离的突变型启动子,显示为通过位于fabA上游紧邻的基因内的四碱基缺失从头产生的启动子。 FabB催化的关键UFA合成反应的论证是难以捉摸的,尽管已知它可以催化延伸反应。缺乏FabB的菌株是UFA营养缺陷型,表明该酶催化UFA合成中必不可少的步骤。使用特异于水解短链酰基ACP的硫酯酶,首次在体内追踪了UFA合成途径的中间体。这些实验表明,与亲本野生型菌株相比,fabB突变菌株积累的顺式5-十二碳烯酸少。这些数据表明,由FabB催化的UFA合成中的关键反应是由FabA产生的顺式-3-癸烯酰-ACP的延长。

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