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首页> 外文期刊>Applied and Environmental Microbiology >The atu and liu Clusters Are Involved in the Catabolic Pathways for Acyclic Monoterpenes and Leucine in Pseudomonas aeruginosa
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The atu and liu Clusters Are Involved in the Catabolic Pathways for Acyclic Monoterpenes and Leucine in Pseudomonas aeruginosa

机译:ATU和Liu集群参与了铜绿假单胞菌的共胞单萜和亮氨酸的分解代谢途径

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Evidence suggests that the Pseudomonas aeruginosa PAO1 gnyRDBHAL cluster, which is involved in acyclic isoprenoid degradation (A. L. Díaz-Pérez, N. A. Zavala-Hernández, C. Cervantes, and J. Campos-García, Appl. Environ. Microbiol. 70:5102-5110, 2004), corresponds to the liuRABCDE cluster (B. Hoschle, V. Gnau, and D. Jendrossek, Microbiology 151:3649-3656, 2005). A liu (leucine and isovalerate utilization) homolog cluster was found in the PAO1 genome and is related to the catabolism of acyclic monoterpenes of the citronellol family (AMTC); it was named the atu cluster (acyclic terpene utilization), consisting of the atuCDEF genes and lacking the hydroxymethyl-glutaryl-coenzyme A (CoA) lyase (HMG-CoA lyase) homolog. Mutagenesis of the atu and liu clusters showed that both are involved in AMTC and leucine catabolism by encoding the enzymes related to the geranyl-CoA and the 3-methylcrotonyl-CoA pathways, respectively. Intermediary metabolites of the acyclic monoterpene pathway, citronellic and geranic acids, were accumulated, and leucine degradation rates were affected in both atuF and liuD mutants. The alpha subunit of geranyl-CoA carboxylase and the alpha subunit of 3-methylcrotonyl-CoA carboxylase (α-MCCase), encoded by the atuF and liuD genes, respectively, were both induced by citronellol, whereas only the α-MCCase subunit was induced by leucine. Both citronellol and leucine also induced a LacZ transcriptional fusion at the liuB gene. The liuE gene encodes a probable hydroxy-acyl-CoA lyase (probably HMG-CoA lyase), an enzyme with bifunctional activity that is essential for both AMTC and leucine degradation. P. aeruginosa PAO1 products encoded by the liuABCD cluster showed a higher sequence similarity (77.2 to 79.5%) with the probable products of liu clusters from several Pseudomonas species than with the atuCDEF cluster from PAO1 (41.5%). Phylogenetic studies suggest that the atu cluster from P. aeruginosa could be the result of horizontal transfer from Alphaproteobacteria. Our results suggest that the atu and liu clusters are bifunctional operons involved in both the AMTC and leucine catabolic pathways.
机译:证据表明,铜绿假单胞菌Pao1 Gnyrdbhal群体参与了无循环异戊二烯降解(AlDíaz-Pérez,Na Zavala-Hernández,C.Cervantes和J.Campos-García,Appl。Microbiol。70:5102-5110 ,2004),对应于Liurabcde集群(B. Hoschle,V.GNAU和D.JendroSsek,微生物学151:3649-3656,2005)。在Pao1基因组中发现了刘(亮氨酸和异维利用)同源物簇,与Citronellol家族(AMTC)的共克里氏纤维单萜的分解代谢有关;它被命名为ATU集群(无环萜烯利用率),由ATUCDEF基因组成,缺乏羟甲基 - 谷氨酶A(COA)裂解酶(HMG-COA裂解酶)同源物。 ATU和Liu簇的诱变表明,两者都是通过编码与Geranyl-CoA和3-甲基丙烯酰基-CoA途径相关的酶参与AMTC和亮氨酸分解代谢。积聚环状单萜酮途径,香橼和甘蔗酸的中间代谢物,在ATUF和Liud突变体中受到亮氨酸降解率。分别由Citronellol诱导由ATUF和Liud基因编码的Geranyl-CoA羧化酶和3-甲基凝结-CoA羧化酶(α-麦考酶)的α亚基的α亚基,而仅诱导α-麦考酶亚单位用亮氨酸。 Citronellol和亮氨酸也诱导Liub基因的Lacz转录融合。 LIUE基因编码可能的羟基 - 酰基-COA裂解酶(可能HMG-COA裂解酶),一种具有双官能活性的酶,对于AMTC和亮氨酸降解至关重要。 P.浏览群体编码的铜绿假单胞菌PAO1产品序列相似度较高(77.2至79.5±5±5℃),其中刘簇的可能性来自几种假单胞菌种类,而不是来自PAO1(41.5 %)的ATUCDEF集群。系统发育研究表明,来自P.铜绿假单胞菌的ATU群可能是从αproteobacteria水平转移的结果。我们的结果表明,ATU和刘集群是AMTC和亮氨酸分解途径涉及的双功能操纵。

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