Catabolism of 3-hydroxypyridine by Ensifer adhaerens HP1: a novel four-component gene encoding 3-hydroxypyridine dehydrogenase HpdA catalyzes the first step of biodegradation

Author:

Wang Haixia,Wang Xiaoyu,Ren Hao,Wang Xuejun,Lu Zhenmei

Abstract

Abstract3-Hydroxypyridine (3HP) is an important natural pyridine derivative. Ensifer adhaerens HP1 can utilize 3HP as the sole source of carbon, nitrogen and energy to grow. However, the genes responsible for the degradation of 3HP remain unknown. In this study, we predicted that a gene cluster, designated 3hpd, may be responsible for the degradation of 3HP. The initial hydroxylation of 3HP is catalyzed by a four-component dehydrogenase (HpdA1A2A3A4), leading to the formation of 2,5-dihydroxypyridine (2,5-DHP) in E. adhaerens HP1. In addition, the SRPBCC component in HpdA existed as a separate subunit, which is different from other SRPBCC-containing molybdohydroxylases acting on N-heterocyclic aromatic compounds. Our findings provide a better understanding of the microbial degradation of pyridine derivatives in nature. Additionally, research on the origin of the discovered four-component dehydrogenase with a separate SRPBCC domain may be of great significance.Importance3-Hydroxypyridine is an important building block for synthesizing drugs, herbicides and antibiotics. Although the microbial degradation of 3-hydroxypyridine has been studied for many years, the molecular mechanisms remain unclear. Here, we show that 3hpd is responsible for the catabolism of 3-hydroxypyridine. The 3hpd gene cluster was found to be widespread in Actinobacteria, Rubrobacteria, Thermoleophilia, and Alpha-, Beta-, and Gammaproteobacteria, and the genetic organization of the 3hpd gene clusters in these bacteria showed high diversity. Our findings provide new insight into the catabolism of 3-hydroxypyridine in bacteria.

Publisher

Cold Spring Harbor Laboratory

Reference57 articles.

1. Role of P450IIE1 in the metabolism of 3-hydroxypyridine, a constituent of tobacco smoke: redox cycling and DNA strand scission by the metabolite 2, 5-dihydroxypyridine;Cancer research,1990

2. Thermal degradation products derived from the smoke of Salvia divinorum leaves

3. Studies on the activity of three palladium (II) compounds of the form: Trans-PdL2Cl2 where L= 2-hydroxypyridine, 3-hydroxypyridine, and 4-hydroxypyridine;Journal of inorganic biochemistry,2007

4. Biologically active mesomeric betaines and alkaloids, derived from 3-hydroxypyridine, pyridin-N-oxide, nicotinic acid and picolinic acid: Three types of conjugation and their consequences;Current Organic Chemistry,2004

5. Chemistry of 3-hydroxypyridine Part 1: Bromination and iodination of 3-hydroxypyridine;Synthesis, 1990,1990

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