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睾丸酮丛毛单胞菌BR6020具有一个用于原儿茶酸间位二醇裂解的单一基因位点。

Comamonas testosteroni BR6020 possesses a single genetic locus for extradiol cleavage of protocatechuate.

作者信息

Providenti Miguel A, Mampel Jörg, MacSween Scott, Cook Alasdair M, Wyndham R Campbell

机构信息

Faculty of Biology, The University, D-78457, Konstanz, Germany2.

Institute of Biology, College of Natural Sciences, Carleton University, Ottawa, Ontario, CanadaK1S 5B61.

出版信息

Microbiology (Reading). 2001 Aug;147(Pt 8):2157-2167. doi: 10.1099/00221287-147-8-2157.

Abstract

A key intermediate for biodegradation of various distinct aromatic growth substrates in Comamonas testosteroni is protocatechuate (Pca), which is metabolized by the 4,5-extradiol (meta) ring fission pathway. A locus harbouring genes from C. testosteroni BR6020 was cloned, dubbed pmd, which encodes the enzymes that degrade Pca. The identity of pmdAB, encoding respectively the alpha- and beta-subunit of the Pca ring-cleavage enzyme, was confirmed by N-terminal sequencing and molecular mass determination of both subunits from the separated enzyme. Disruption of pmdA resulted in a strain unable to grow on Pca and a variety of aromatic substrates funnelled through this compound (m- and p-hydroxybenzoate, p-sulfobenzoate, phthalate, isophthalate, terephthalate, vanillate, isovanillate and veratrate). Growth on benzoate and o-aminobenzoate (anthranilate) was not affected in this strain, indicating that these substrates are metabolized via a different lower pathway. Tentative functions for the products of other pmd genes were assigned based on sequence identity and/or similarity to proteins from other proteobacteria involved in uptake or metabolism of aromatic compounds. This study provides evidence for a single lower pathway in C. testosteroni for metabolism of Pca, which is generated by different upper pathways acting on a variety of aromatic substrates.

摘要

睾丸酮丛毛单胞菌中用于生物降解各种不同芳香族生长底物的关键中间体是原儿茶酸(Pca),它通过4,5-二醇(间位)环裂解途径进行代谢。一个携带来自睾丸酮丛毛单胞菌BR6020基因的基因座被克隆出来,命名为pmd,它编码降解Pca的酶。通过对分离出的酶的两个亚基进行N端测序和分子量测定,证实了分别编码Pca环裂解酶的α-和β-亚基的pmdAB的身份。pmdA的破坏导致一个菌株无法在Pca以及通过该化合物进入的多种芳香族底物(间羟基苯甲酸、对羟基苯甲酸、对磺基苯甲酸、邻苯二甲酸、间苯二甲酸、对苯二甲酸、香草酸、异香草酸和藜芦酸)上生长。该菌株在苯甲酸和邻氨基苯甲酸(邻氨基苯甲酸)上的生长不受影响,这表明这些底物是通过不同的下游途径进行代谢的。基于与其他参与芳香族化合物摄取或代谢的变形菌门蛋白质的序列同一性和/或相似性,对其他pmd基因的产物的暂定功能进行了分配。这项研究为睾丸酮丛毛单胞菌中Pca代谢的单一下游途径提供了证据,Pca由作用于多种芳香族底物的不同上游途径产生。

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