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A Unique Homo-Hexameric Structure of 2-Aminomuconate Deaminase in the Bacterium Pseudomonas species AP–3

The bacterium Pseudomonas species sp. AP–3 is one of several microorganisms that are capable of using 2-aminophenol as its sole source of carbon, nitrogen and energy. Several 2-aminophenol-metabolizing enzymes have pivotal roles in the biodegradation of aniline and its derivatives as environmental p...

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Autores principales: Chen, Yanjuan, Chen, Yiping, Jiang, Hua, Lu, Deren, Hu, Tingting, Bi, Gang, Ran, Yuping, Yu, Baofeng, Dong, Hui, Su, Dan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6742747/
https://www.ncbi.nlm.nih.gov/pubmed/31555255
http://dx.doi.org/10.3389/fmicb.2019.02079
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author Chen, Yanjuan
Chen, Yiping
Jiang, Hua
Lu, Deren
Hu, Tingting
Bi, Gang
Ran, Yuping
Yu, Baofeng
Dong, Hui
Su, Dan
author_facet Chen, Yanjuan
Chen, Yiping
Jiang, Hua
Lu, Deren
Hu, Tingting
Bi, Gang
Ran, Yuping
Yu, Baofeng
Dong, Hui
Su, Dan
author_sort Chen, Yanjuan
collection PubMed
description The bacterium Pseudomonas species sp. AP–3 is one of several microorganisms that are capable of using 2-aminophenol as its sole source of carbon, nitrogen and energy. Several 2-aminophenol-metabolizing enzymes have pivotal roles in the biodegradation of aniline and its derivatives as environmental pollutants in Pseudomonas. The bacterium Pseudomonas sp. AP–3 recruits a unique 2-aminomuconate deaminase (AmnE) to hydrolyze 2-aminomuconate to 4-oxalocrotonate, and releases ammonia in the modified meta-cleavage pathway by forming various compounds—including acetaldehyde, pyruvic acid, acetyl-CoA, and succinate—that may enter the Krebs cycle. AmnE also belongs to the YjgF/YER057c/UK114 family (also known as the Rid family), which is conserved in all domains of life and prefers structurally homotrimeric forms with diverse functional purposes. To study the mechanism of the modified meta-cleavage pathway in Pseudomonas sp. AP–3, we determined the first crystal structure of AmnE from Pseudomonas sp. AP–3 at 1.75 Å. AmnE forms a unique homohexamer instead of a trimer which is normally adopted by the members of YjgF/YER057c/UK114 family. Based on the structure of the AmnE hexamer, we observed a hydrophobic base composed of six Lp3 loops (residues 122–131) in each of the AmnE protomers that have pivotal roles in the assembly of the hexamer. Eighteen hydrogen bonds formed by the residues Met(96), Pro(126), and Arg(56), which surround the hydrophobic base, allowed the combination of the two trimers into a stable hexamer. The single mutant of AmnE R56A lost the ability to maintain the hexameric conformation, and revealed that the hydrogen bonds between residues Arg(56) and Met(96) have pivotal roles in the AmnE hexameric assembly.
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spelling pubmed-67427472019-09-25 A Unique Homo-Hexameric Structure of 2-Aminomuconate Deaminase in the Bacterium Pseudomonas species AP–3 Chen, Yanjuan Chen, Yiping Jiang, Hua Lu, Deren Hu, Tingting Bi, Gang Ran, Yuping Yu, Baofeng Dong, Hui Su, Dan Front Microbiol Microbiology The bacterium Pseudomonas species sp. AP–3 is one of several microorganisms that are capable of using 2-aminophenol as its sole source of carbon, nitrogen and energy. Several 2-aminophenol-metabolizing enzymes have pivotal roles in the biodegradation of aniline and its derivatives as environmental pollutants in Pseudomonas. The bacterium Pseudomonas sp. AP–3 recruits a unique 2-aminomuconate deaminase (AmnE) to hydrolyze 2-aminomuconate to 4-oxalocrotonate, and releases ammonia in the modified meta-cleavage pathway by forming various compounds—including acetaldehyde, pyruvic acid, acetyl-CoA, and succinate—that may enter the Krebs cycle. AmnE also belongs to the YjgF/YER057c/UK114 family (also known as the Rid family), which is conserved in all domains of life and prefers structurally homotrimeric forms with diverse functional purposes. To study the mechanism of the modified meta-cleavage pathway in Pseudomonas sp. AP–3, we determined the first crystal structure of AmnE from Pseudomonas sp. AP–3 at 1.75 Å. AmnE forms a unique homohexamer instead of a trimer which is normally adopted by the members of YjgF/YER057c/UK114 family. Based on the structure of the AmnE hexamer, we observed a hydrophobic base composed of six Lp3 loops (residues 122–131) in each of the AmnE protomers that have pivotal roles in the assembly of the hexamer. Eighteen hydrogen bonds formed by the residues Met(96), Pro(126), and Arg(56), which surround the hydrophobic base, allowed the combination of the two trimers into a stable hexamer. The single mutant of AmnE R56A lost the ability to maintain the hexameric conformation, and revealed that the hydrogen bonds between residues Arg(56) and Met(96) have pivotal roles in the AmnE hexameric assembly. Frontiers Media S.A. 2019-09-06 /pmc/articles/PMC6742747/ /pubmed/31555255 http://dx.doi.org/10.3389/fmicb.2019.02079 Text en Copyright © 2019 Chen, Chen, Jiang, Lu, Hu, Bi, Ran, Yu, Dong and Su. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Chen, Yanjuan
Chen, Yiping
Jiang, Hua
Lu, Deren
Hu, Tingting
Bi, Gang
Ran, Yuping
Yu, Baofeng
Dong, Hui
Su, Dan
A Unique Homo-Hexameric Structure of 2-Aminomuconate Deaminase in the Bacterium Pseudomonas species AP–3
title A Unique Homo-Hexameric Structure of 2-Aminomuconate Deaminase in the Bacterium Pseudomonas species AP–3
title_full A Unique Homo-Hexameric Structure of 2-Aminomuconate Deaminase in the Bacterium Pseudomonas species AP–3
title_fullStr A Unique Homo-Hexameric Structure of 2-Aminomuconate Deaminase in the Bacterium Pseudomonas species AP–3
title_full_unstemmed A Unique Homo-Hexameric Structure of 2-Aminomuconate Deaminase in the Bacterium Pseudomonas species AP–3
title_short A Unique Homo-Hexameric Structure of 2-Aminomuconate Deaminase in the Bacterium Pseudomonas species AP–3
title_sort unique homo-hexameric structure of 2-aminomuconate deaminase in the bacterium pseudomonas species ap–3
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6742747/
https://www.ncbi.nlm.nih.gov/pubmed/31555255
http://dx.doi.org/10.3389/fmicb.2019.02079
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