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芳香杆菌 CIB 中厌氧 3-羟基苯甲酸降解途径的转录调控。

Transcriptional regulation of the anaerobic 3-hydroxybenzoate degradation pathway in Aromatoleum sp. CIB.

机构信息

Department of Microbial and Plant Biotechnology, Centro de Investigaciones Biológicas Margarita Salas-CSIC, Madrid, Spain.

Faculty of Biology-Microbiology, University of Freiburg, Freiburg, Germany.

出版信息

Microbiol Res. 2024 Nov;288:127882. doi: 10.1016/j.micres.2024.127882. Epub 2024 Aug 24.

Abstract

Phenolic compounds are commonly found in anoxic environments, where they serve as both carbon and energy sources for certain anaerobic bacteria. The anaerobic breakdown of m-cresol, catechol, and certain lignin-derived compounds yields the central intermediate 3-hydroxybenzoate/3-hydroxybenzoyl-CoA. In this study, we have characterized the transcription and regulation of the hbd genes responsible for the anaerobic degradation of 3-hydroxybenzoate in the β-proteobacterium Aromatoleum sp. CIB. The hbd cluster is organized in three catabolic operons and a regulatory hbdR gene that encodes a dimeric transcriptional regulator belonging to the TetR family. HbdR suppresses the activity of the three catabolic promoters (P, P and P) by binding to a conserved palindromic operator box (ATGAATGANTCATTCAT). 3-Hydroxybenzoyl-CoA, the initial intermediate of the 3-hydroxybenzoate degradation pathway, along with benzoyl-CoA, serve as effector molecules that bind to HbdR inducing the expression of the hbd genes. Moreover, the hbd genes are subject to additional regulation influenced by the presence of non-aromatic carbon sources (carbon catabolite repression), and their expression is induced in oxygen-deprived conditions by the AcpR transcriptional activator. The prevalence of the hbd cluster among members of the Aromatoleum/Thauera bacterial group, coupled with its association with mobile genetic elements, suggests acquisition through horizontal gene transfer. These findings significantly enhance our understanding of the regulatory mechanisms governing the hbd gene cluster in bacteria, paving the way for further exploration into the anaerobic utilization/valorization of phenolic compounds derived from lignin.

摘要

酚类化合物通常存在于缺氧环境中,作为某些厌氧菌的碳源和能源。间甲酚、儿茶酚和某些木质素衍生化合物的厌氧分解产生了中间产物 3-羟基苯甲酸/3-羟基苯甲酰辅酶 A。在这项研究中,我们已经描述了β变形菌 Aromatoleum sp. CIB 中负责 3-羟基苯甲酸厌氧降解的 hbd 基因的转录和调控。hbd 簇组织在三个分解代谢操纵子和一个调节 hbdR 基因中,该基因编码属于 TetR 家族的二聚体转录调节因子。HbdR 通过结合保守的回文操纵子盒(ATGAATGANTCATTCAT)来抑制三个分解代谢启动子(P、P 和 P)的活性。3-羟基苯甲酰辅酶 A,即 3-羟基苯甲酸降解途径的初始中间产物,以及苯甲酰辅酶 A,作为效应分子结合 HbdR,诱导 hbd 基因的表达。此外,hbd 基因还受到非芳香碳源存在的影响(碳分解代谢阻遏),并且在缺氧条件下通过 AcpR 转录激活剂诱导其表达。hbd 簇在 Aromatoleum/Thauera 细菌群成员中的普遍性,以及其与移动遗传元件的关联,表明它是通过水平基因转移获得的。这些发现极大地增强了我们对细菌中 hbd 基因簇调控机制的理解,为进一步探索木质素衍生酚类化合物的厌氧利用/增值铺平了道路。

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