Cargando…

Characterization of Heterologously Expressed Acetyl Xylan Esterase1 Isolated from the Anaerobic Rumen Fungus Neocallimastix frontalis PMA02

Acetyl xylan esterase (AXE), which hydrolyzes the ester linkages of the naturally acetylated xylan and thus known to have an important role for hemicellulose degradation, was isolated from the anaerobic rumen fungus Neocallimastix frontatlis PMA02, heterologously expressed in Escherichi coli (E.coli...

Descripción completa

Detalles Bibliográficos
Autores principales: Kwon, Mi, Song, Jaeyong, Park, Hong-Seog, Park, Hyunjin, Chang, Jongsoo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Asian-Australasian Association of Animal Production Societies (AAAP) and Korean Society of Animal Science and Technology (KSAST) 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5088377/
https://www.ncbi.nlm.nih.gov/pubmed/27383808
http://dx.doi.org/10.5713/ajas.16.0336
_version_ 1782464083954499584
author Kwon, Mi
Song, Jaeyong
Park, Hong-Seog
Park, Hyunjin
Chang, Jongsoo
author_facet Kwon, Mi
Song, Jaeyong
Park, Hong-Seog
Park, Hyunjin
Chang, Jongsoo
author_sort Kwon, Mi
collection PubMed
description Acetyl xylan esterase (AXE), which hydrolyzes the ester linkages of the naturally acetylated xylan and thus known to have an important role for hemicellulose degradation, was isolated from the anaerobic rumen fungus Neocallimastix frontatlis PMA02, heterologously expressed in Escherichi coli (E.coli) and characterized. The full-length cDNA encoding NfAXE1 was 1,494 bp, of which 978 bp constituted an open reading frame. The estimated molecular weight of NfAXE1 was 36.5 kDa with 326 amino acid residues, and the calculated isoelectric point was 4.54. The secondary protein structure was predicted to consist of nine α-helixes and 12 β-strands. The enzyme expressed in E.coli had the highest activity at 40°C and pH 8. The purified recombinant NfAXE1 had a specific activity of 100.1 U/mg when p-nitrophenyl acetate (p-NA) was used as a substrate at 40°C, optimum temperature. The amount of liberated acetic acids were the highest and the lowest when p-NA and acetylated birchwood xylan were used as substrates, respectively. The amount of xylose released from acetylated birchwod xylan was increased by 1.4 fold when NfAXE1 was mixed with xylanase in a reaction cocktail, implying a synergistic effect of NfAXE1 with xylanase on hemicellulose degradation.
format Online
Article
Text
id pubmed-5088377
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Asian-Australasian Association of Animal Production Societies (AAAP) and Korean Society of Animal Science and Technology (KSAST)
record_format MEDLINE/PubMed
spelling pubmed-50883772016-11-01 Characterization of Heterologously Expressed Acetyl Xylan Esterase1 Isolated from the Anaerobic Rumen Fungus Neocallimastix frontalis PMA02 Kwon, Mi Song, Jaeyong Park, Hong-Seog Park, Hyunjin Chang, Jongsoo Asian-Australas J Anim Sci Article Acetyl xylan esterase (AXE), which hydrolyzes the ester linkages of the naturally acetylated xylan and thus known to have an important role for hemicellulose degradation, was isolated from the anaerobic rumen fungus Neocallimastix frontatlis PMA02, heterologously expressed in Escherichi coli (E.coli) and characterized. The full-length cDNA encoding NfAXE1 was 1,494 bp, of which 978 bp constituted an open reading frame. The estimated molecular weight of NfAXE1 was 36.5 kDa with 326 amino acid residues, and the calculated isoelectric point was 4.54. The secondary protein structure was predicted to consist of nine α-helixes and 12 β-strands. The enzyme expressed in E.coli had the highest activity at 40°C and pH 8. The purified recombinant NfAXE1 had a specific activity of 100.1 U/mg when p-nitrophenyl acetate (p-NA) was used as a substrate at 40°C, optimum temperature. The amount of liberated acetic acids were the highest and the lowest when p-NA and acetylated birchwood xylan were used as substrates, respectively. The amount of xylose released from acetylated birchwod xylan was increased by 1.4 fold when NfAXE1 was mixed with xylanase in a reaction cocktail, implying a synergistic effect of NfAXE1 with xylanase on hemicellulose degradation. Asian-Australasian Association of Animal Production Societies (AAAP) and Korean Society of Animal Science and Technology (KSAST) 2016-11 2016-06-11 /pmc/articles/PMC5088377/ /pubmed/27383808 http://dx.doi.org/10.5713/ajas.16.0336 Text en Copyright © 2016 by Asian-Australasian Journal of Animal Sciences This is an open-access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Kwon, Mi
Song, Jaeyong
Park, Hong-Seog
Park, Hyunjin
Chang, Jongsoo
Characterization of Heterologously Expressed Acetyl Xylan Esterase1 Isolated from the Anaerobic Rumen Fungus Neocallimastix frontalis PMA02
title Characterization of Heterologously Expressed Acetyl Xylan Esterase1 Isolated from the Anaerobic Rumen Fungus Neocallimastix frontalis PMA02
title_full Characterization of Heterologously Expressed Acetyl Xylan Esterase1 Isolated from the Anaerobic Rumen Fungus Neocallimastix frontalis PMA02
title_fullStr Characterization of Heterologously Expressed Acetyl Xylan Esterase1 Isolated from the Anaerobic Rumen Fungus Neocallimastix frontalis PMA02
title_full_unstemmed Characterization of Heterologously Expressed Acetyl Xylan Esterase1 Isolated from the Anaerobic Rumen Fungus Neocallimastix frontalis PMA02
title_short Characterization of Heterologously Expressed Acetyl Xylan Esterase1 Isolated from the Anaerobic Rumen Fungus Neocallimastix frontalis PMA02
title_sort characterization of heterologously expressed acetyl xylan esterase1 isolated from the anaerobic rumen fungus neocallimastix frontalis pma02
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5088377/
https://www.ncbi.nlm.nih.gov/pubmed/27383808
http://dx.doi.org/10.5713/ajas.16.0336
work_keys_str_mv AT kwonmi characterizationofheterologouslyexpressedacetylxylanesterase1isolatedfromtheanaerobicrumenfungusneocallimastixfrontalispma02
AT songjaeyong characterizationofheterologouslyexpressedacetylxylanesterase1isolatedfromtheanaerobicrumenfungusneocallimastixfrontalispma02
AT parkhongseog characterizationofheterologouslyexpressedacetylxylanesterase1isolatedfromtheanaerobicrumenfungusneocallimastixfrontalispma02
AT parkhyunjin characterizationofheterologouslyexpressedacetylxylanesterase1isolatedfromtheanaerobicrumenfungusneocallimastixfrontalispma02
AT changjongsoo characterizationofheterologouslyexpressedacetylxylanesterase1isolatedfromtheanaerobicrumenfungusneocallimastixfrontalispma02