首页> 外文期刊>Archives of microbiology >Genetic and biochemical comparison of 2-aminophenol 1, 6-dioxygenase of Pseudomonas pseudoalcaligenes JS45 to meta-cleavage dioxygenases: divergent evolution of 2-aminophenol meta-cleavage pathway
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Genetic and biochemical comparison of 2-aminophenol 1, 6-dioxygenase of Pseudomonas pseudoalcaligenes JS45 to meta-cleavage dioxygenases: divergent evolution of 2-aminophenol meta-cleavage pathway

机译:假单胞菌JS45的2-氨基苯酚1,6-双加氧酶与间位裂解双加氧酶的遗传和生化比较:2-氨基酚间位裂解途径的发散进化

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摘要

Nitrobenzene is degraded to pyruvate and acetaldehyde by Pseudomonas pseudoalcaligenes JS45 via a reductive pathway, and by Comamonas sp. JS765 via an oxidative pathway. Although the initial reactions in the degradation of nitrobenzene by the two bacteria are totally different, the lower pathways are similar and converge at the level of 4-oxalocrotonate. In order to further investigate the biochemical properties and reveal the evolutionary relationships between the two lower pathways, the genes encoding the 2-aminophenol 1, 6-dioxygenase were coloned and sequenced. 2-Aminophenol 1,6-diocygenase from P. pseudoalcaligenes JS45 and catechol 2, 3-dioxygenase from Comamonas sp. JS765 were able to act on both catechol and 2-aminophenol, but catechol was a suicide substrate of 2-aminophenol 1, 6-dioxygenase. The activity of 2-aminophenol 1, 6-dioxygenase was restored after removal of catechol and incubation with ascorbate and FeCl_2. Both the #alpha#-subunit (AmnA) and the #beta#-subunit (AmnB) of the dioxygenase from P. pseudoalcaligenes JS45 show a high degree of identity to the corresponding subunits of the ring-fission dioxygenase from Pseudomonas sp. AP-3: 67 % for the #alpha#-subunit, and 84 % for the #beta#-subunit. Sequence similarity studies suggest that the #beta#-subunits of both 2-aminophenol 1, 6-dioxygenases are distantly related to homoprotocatechuate 2, 3-dioxygenase from Escherichia coli strains W and C and then to catechol 2, 3-dioxygenase from Alcaligenes eutrophus. Four active-site-relevant histidines are conserved in AmnB, but not in AmnA. The lack of conserved histidines indicates the absence of an Fe~2+ binding site in AmnA, which explains the previous observations of only approximately one Fe~2+ per two subunits in the 2-aminophenol 1, 6-dioxygenases from P. pseudoalcaligenes JS45. The 2-aminophenol 1, 6-dioxygenase genes are located upstream of the 2-aminomuconic semialdehyde dehydrogenase gene, and a putative member of the YjgF protein family is upstream of the dioxygenase genes. Transcriptional analysis indicates that the YjgF-like protein. 2-aminophenol 1, 6-dioxygenase, and 2-aminomuconic semialdehyde dehydrogenase are coordinately transcribed. A putative ORF similar to part of the RNA helicase genes is downstream of the dehydrogenase gene. Both the novel organization of the genes and the phylogeny of the dioxygenases and dehydrogenase indicate that the 2-aminophenol pathway in P. pseudoalcaligenes JS45 represents an example of a distant divergent evolution of meta-cleavage pathways.
机译:假单胞假单胞菌JS45通过还原途径和Comamonas sp。将硝基苯降解为丙酮酸和乙醛。 JS765通过氧化途径。尽管两种细菌降解硝基苯的初始反应完全不同,但较低的途径相似,并收敛于4-草酸巴豆酸盐水平。为了进一步研究生化特性并揭示两条较低途径之间的进化关系,对编码2-氨基苯酚1、6-二加氧酶的基因进行了克隆和测序。 P. pseudoalcaligenes JS45的2-Aminophenol 1,6-diocygengenase和Comamonas sp。的儿茶酚2,3-dioxygenase。 JS765能够同时作用于邻苯二酚和2-氨基苯酚,但邻苯二酚是2-氨基苯酚1,6-双加氧酶的自杀底物。去除邻苯二酚并与抗坏血酸盐和FeCl_2一起孵育后,恢复了2-氨基苯酚1、6-二加氧酶的活性。来自假拟杯假单胞菌JS45的双加氧酶的#alpha#-亚基(AmnA)和#beta#-亚基(AmnB)都与假单胞菌属的环裂变双加氧酶的相应亚基具有高度的同一性。 AP-3:#alpha#-亚基为67%,#beta#-亚基为84%。序列相似性研究表明2-氨基苯酚1、6-二加氧酶的#β#-亚基与大肠杆菌W和C株的原儿茶酸2、3-二加氧酶,然后与拟南芥中的儿茶酚2、3-二加氧酶远距离相关。四个与活性位点相关的组氨酸在AmnB中保守,但在AmnA中不保守。缺乏保守的组氨酸表明AmnA中不存在Fe〜2 +结合位点,这解释了以前的观察到假单胞假单胞菌JS45的2-氨基苯酚1、6-二加氧酶中每两个亚基只有一个Fe〜2 +。 。 2-氨基苯酚1,6-双加氧酶基因位于2-氨基粘康半醛脱氢酶基因的上游,YjgF蛋白家族的推定成员位于双加氧酶基因的上游。转录分析表明为YjgF样蛋白。 2-氨基苯酚1、6-二加氧酶和2-氨基粘康半醛脱氢酶被协调转录。类似于RNA解旋酶基因一部分的推定ORF位于脱氢酶基因的下游。基因的新颖组织以及双加氧酶和脱氢酶的系统发育都表明假拟杯假单胞菌JS45中的2-氨基苯酚途径代表了元切割途径的远距离进化。

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