首页> 美国卫生研究院文献>Journal of Bacteriology >Anaerobic p-Coumarate Degradation by Rhodopseudomonas palustris and Identification of CouR a MarR Repressor Protein That Binds p-Coumaroyl Coenzyme A
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Anaerobic p-Coumarate Degradation by Rhodopseudomonas palustris and Identification of CouR a MarR Repressor Protein That Binds p-Coumaroyl Coenzyme A

机译:拟南芥对厌氧p-香豆酸酯的降解及结合p-香豆酰辅酶A的MarR阻遏蛋白CourR的鉴定

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摘要

The phenylpropanoid p-coumarate and structurally related aromatic compounds are produced in large amounts by green plants and are excellent carbon sources for many soil bacteria. Aerobic bacteria remove the acyl side chain from phenylpropanoids to leave an aromatic aldehyde, which then enters one of several possible central pathways of benzene ring degradation. We investigated the pathway for the anaerobic degradation of p-coumarate by the phototrophic bacterium Rhodopseudomonas palustris and found that it also follows this metabolic logic. We characterized enzymes for the conversion of p-coumarate to p-hydroxybenzaldehyde and acetyl coenzyme A (acetyl-CoA) encoded by the couAB operon. We also identified a MarR family transcriptional regulator that we named CouR. A couR mutant had elevated couAB expression. In addition, His-tagged CouR bound with high affinity to a DNA fragment encompassing the couAB promoter region, and binding was abrogated by the addition of nanomolar quantities of p-coumaroyl-CoA but not by p-coumarate. Footprinting demonstrated binding of CouR to an inverted repeat sequence that overlaps the −10 region of the couAB promoter. Our results provide evidence for binding of a CoA-modified aromatic compound by a MarR family member. Although the MarR family is widely distributed in bacteria and archaea and includes over 12,000 members, ligands have been identified for relatively few family members. Here we provide biochemical evidence for a new category of MarR ligand.
机译:苯丙酸酯对香豆酸酯和与结构相关的芳族化合物是由绿色植物大量生产的,并且是许多土壤细菌的极佳碳源。好氧细菌从苯基丙烷中去除了酰基侧链,留下了芳香醛,然后该醛进入苯环降解的几种可能的中心途径之一。我们研究了光养细菌Phodopseudomonas palustris对对香豆酸盐的厌氧降解途径,发现它也遵循这种代谢逻辑。我们表征了由couAB操纵子编码的对香豆酸酯转化为对羟基苯甲醛和乙酰辅酶A(乙酰辅酶A)的酶。我们还鉴定了一个名为CouR的MarR家族转录调节因子。 couR突变体的couAB表达升高。此外,His标记的CourR以高亲和力与包含couAB启动子区域的DNA片段结合,并且通过添加纳摩尔量的p-香豆酰基-CoA而不是p-香豆酸酯来消除结合。足迹表明,CourR与与couAB启动子的-10区重叠的反向重复序列结合。我们的结果提供了MarR家族成员结合CoA修饰的芳香族化合物的证据。尽管MarR家族广泛分布于细菌和古细菌中,并包括超过12,000个成员,但已经为相对较少的家族成员鉴定了配体。在这里,我们提供了新的MarR配体类别的生化证据。

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