首页> 外文期刊>Journal of bacteriology >BadR, a New MarR Family Member, Regulates Anaerobic Benzoate Degradation by Rhodopseudomonas palustris in Concert with AadR, an Fnr Family Member
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BadR, a New MarR Family Member, Regulates Anaerobic Benzoate Degradation by Rhodopseudomonas palustris in Concert with AadR, an Fnr Family Member

机译:MarR家族的新成员BadR与Fnr家族的成员AadR共同调节Rhodopseudomonas palustris厌氧的苯甲酸酯降解

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A cluster of genes for the anaerobic degradation of benzoate has been described for the phototrophic bacterium Rhodopseudomonas palustris. Here we provide an initial analysis of the regulation of anaerobic benzoate degradation by examining the contributions of two regulators: a new regulator, BadR, encoded by the benzoate degradation gene cluster, and a previously described regulator, AadR, whose gene lies outside the cluster. Strains with single mutations in eitherbadR or aadR grew slowly on benzoate but were relatively unimpaired in growth on succinate and several intermediates of benzoate degradation. A badR aadR double mutant was completely defective in anaerobic growth on benzoate. Effects of the regulators on transcriptional activation were monitored with anR. palustris strain carrying a chromosomal fusion of ′lacZ to the badE gene of thebadDEFG operon. This operon encodes benzoyl-coenzyme A (benzoyl-CoA) reductase, an unusual oxygen-sensitive enzyme that catalyzes the benzene ring reduction reaction that is the rate-limiting step in anaerobic benzoate degradation. Expression ofbadE::′lacZ was induced 100-fold when cells grown aerobically on succinate were shifted to anaerobic growth on succinate plus benzoate. The aadR gene was required for a 20-fold increase in expression that occurred in response to anaerobiosis, and badR was responsible for a further 5-fold increase in expression that occurred in response to benzoate. Further studies with the badE::′lacZ fusion strain grown with various kinds of aromatic acids indicated that BadR probably responds to benzoyl-CoA acting as an effector molecule. Sequence information indicates that BadR is a member of the MarR family of transcriptional regulators. These studies expand the range of functions regulated by MarR family members to include anaerobic aromatic acid degradation and provide an example of a MarR-type protein that acts as a positive regulator rather than as a negative regulator, as do most MarR family members. AadR resembles the Escherichia coli Fnr regulator in sequence and contains cysteine residues that are spaced appropriately to serve in the capacity of a redox-sensing protein.
机译:已经描述了光养细菌 Rhodopseudomonas palustris 的一组苯甲酸厌氧降解基因。在这里,我们通过检查两个调节子的作用,对厌氧性苯甲酸酯降解的调节进行了初步分析:一个新的调节子,由苯甲酸酯降解基因簇编码的BadR,和一个先前描述的调节子,AadR,其基因位于簇外。在 badR aadR 中具有单个突变的菌株在苯甲酸酯上生长缓慢,但在琥珀酸酯和苯甲酸酯降解的几种中间体上的生长相对不受损害。一个 badR aadR 双重突变体在苯甲酸厌氧生长中是完全缺陷的。用emR监测调节剂对转录激活的作用。携带' lacZ badDEFG 操纵子的 badE 基因的染色体融合的palustris 菌株。该操纵子编码苯甲酰基辅酶A(苯甲酰基-CoA)还原酶,这是一种不寻常的对氧敏感的酶,可催化苯环还原反应,这是厌氧苯甲酸酯降解中的限速步骤。当将有氧在琥珀酸盐上生长的细胞转移到在琥珀酸加苯甲酸盐上厌氧生长时, badE ::' lacZ 的表达被诱导了100倍。需要 aadR 基因使厌氧菌反应中的表达增加20倍,而 badR 导致在厌氧菌中进一步表达的5倍增加对苯甲酸酯的反应。用各种芳香酸生长的 badE ::' lacZ 融合菌株的进一步研究表明,BadR可能响应作为效应分子的苯甲酰辅酶A。序列信息表明BadR是转录调节因子MarR家族的成员。这些研究扩大了MarR家族成员调节的功能范围,包括厌氧芳香酸降解,并提供了像MarR家族大多数成员一样起正调节剂而非负调节剂作用的MarR型蛋白的实例。 AadR在序列上类似于 Escherichia coli Fnr调节剂,并含有适当间隔的半胱氨酸残基,以发挥氧化还原敏感蛋白的功能。

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