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Characterization of Agarolytic Pathway in a Terrestrial Bacterium Cohnella sp. LGH

Previously, we have reported that an endo-type β-agarase AgaW was responsible for the hydrolysis of agarose into the major product neoagarotetraose in a terrestrial agar-degrading bacterium Cohnella sp. LGH. Here, we identify and characterize the following depolymerization pathway in strain LGH thro...

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Autores principales: Li, Gen, Guo, Rui, Wu, Shuqi, Cheng, Si, Li, Jiaqi, Liu, Zhenzhen, Xie, Wangliang, Sun, Xiaolin, Zhang, Qiuyi, Li, Zihan, Xu, JiaZheng, Wu, Jun, Wei, Zhong, Hu, Feng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9008576/
https://www.ncbi.nlm.nih.gov/pubmed/35432256
http://dx.doi.org/10.3389/fmicb.2022.828687
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author Li, Gen
Guo, Rui
Wu, Shuqi
Cheng, Si
Li, Jiaqi
Liu, Zhenzhen
Xie, Wangliang
Sun, Xiaolin
Zhang, Qiuyi
Li, Zihan
Xu, JiaZheng
Wu, Jun
Wei, Zhong
Hu, Feng
author_facet Li, Gen
Guo, Rui
Wu, Shuqi
Cheng, Si
Li, Jiaqi
Liu, Zhenzhen
Xie, Wangliang
Sun, Xiaolin
Zhang, Qiuyi
Li, Zihan
Xu, JiaZheng
Wu, Jun
Wei, Zhong
Hu, Feng
author_sort Li, Gen
collection PubMed
description Previously, we have reported that an endo-type β-agarase AgaW was responsible for the hydrolysis of agarose into the major product neoagarotetraose in a terrestrial agar-degrading bacterium Cohnella sp. LGH. Here, we identify and characterize the following depolymerization pathway in strain LGH through the genomic and enzymatic analysis. In the pathway, neoagarotetraose was depolymerized by a novel α-neoagarooligosaccharide (NAOS) hydrolase CL5012 into 3,6-anhydro-α-L-galactose (L-AHG) and agarotriose; Agarotriose was further depolymerized by a novel agarolytic β-galactosidase CL4994 into D-galactose and neoagarobiose; Neoagarobiose was finally depolymerized by CL5012 into L-AHG and D-galactose. Although α-agarase has not been identified in strain LGH, the combined action of CL5012 and CL4994 unexpectedly plays a critical role in the depolymerization of agarotetraose, one theoretical product of α-agarase hydrolysis of agarose. In this pathway, agarotetraose was depolymerized by CL4994 into D-galactose and neoagarotriose; Neoagarotriose was then depolymerized by CL5012 into L-AHG and agarobiose. Furthermore, another novel endo-type β-agarase CL5055 was identified as an isozyme of AgaW with different pH preference in the hydrolysis of agarose into α-NAOSs. Strain LGH seemed to lack a common exo-type β-agarase responsible for the direct depolymerization of agarose or neoagarooligosaccharide into neoagarobiose. These results highlight the diversity of agarolytic manner in bacteria and provide a novel insight on the diversity of agarolytic pathways.
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spelling pubmed-90085762022-04-15 Characterization of Agarolytic Pathway in a Terrestrial Bacterium Cohnella sp. LGH Li, Gen Guo, Rui Wu, Shuqi Cheng, Si Li, Jiaqi Liu, Zhenzhen Xie, Wangliang Sun, Xiaolin Zhang, Qiuyi Li, Zihan Xu, JiaZheng Wu, Jun Wei, Zhong Hu, Feng Front Microbiol Microbiology Previously, we have reported that an endo-type β-agarase AgaW was responsible for the hydrolysis of agarose into the major product neoagarotetraose in a terrestrial agar-degrading bacterium Cohnella sp. LGH. Here, we identify and characterize the following depolymerization pathway in strain LGH through the genomic and enzymatic analysis. In the pathway, neoagarotetraose was depolymerized by a novel α-neoagarooligosaccharide (NAOS) hydrolase CL5012 into 3,6-anhydro-α-L-galactose (L-AHG) and agarotriose; Agarotriose was further depolymerized by a novel agarolytic β-galactosidase CL4994 into D-galactose and neoagarobiose; Neoagarobiose was finally depolymerized by CL5012 into L-AHG and D-galactose. Although α-agarase has not been identified in strain LGH, the combined action of CL5012 and CL4994 unexpectedly plays a critical role in the depolymerization of agarotetraose, one theoretical product of α-agarase hydrolysis of agarose. In this pathway, agarotetraose was depolymerized by CL4994 into D-galactose and neoagarotriose; Neoagarotriose was then depolymerized by CL5012 into L-AHG and agarobiose. Furthermore, another novel endo-type β-agarase CL5055 was identified as an isozyme of AgaW with different pH preference in the hydrolysis of agarose into α-NAOSs. Strain LGH seemed to lack a common exo-type β-agarase responsible for the direct depolymerization of agarose or neoagarooligosaccharide into neoagarobiose. These results highlight the diversity of agarolytic manner in bacteria and provide a novel insight on the diversity of agarolytic pathways. Frontiers Media S.A. 2022-03-31 /pmc/articles/PMC9008576/ /pubmed/35432256 http://dx.doi.org/10.3389/fmicb.2022.828687 Text en Copyright © 2022 Li, Guo, Wu, Cheng, Li, Liu, Xie, Sun, Zhang, Li, Xu, Wu, Wei and Hu. https://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
Li, Gen
Guo, Rui
Wu, Shuqi
Cheng, Si
Li, Jiaqi
Liu, Zhenzhen
Xie, Wangliang
Sun, Xiaolin
Zhang, Qiuyi
Li, Zihan
Xu, JiaZheng
Wu, Jun
Wei, Zhong
Hu, Feng
Characterization of Agarolytic Pathway in a Terrestrial Bacterium Cohnella sp. LGH
title Characterization of Agarolytic Pathway in a Terrestrial Bacterium Cohnella sp. LGH
title_full Characterization of Agarolytic Pathway in a Terrestrial Bacterium Cohnella sp. LGH
title_fullStr Characterization of Agarolytic Pathway in a Terrestrial Bacterium Cohnella sp. LGH
title_full_unstemmed Characterization of Agarolytic Pathway in a Terrestrial Bacterium Cohnella sp. LGH
title_short Characterization of Agarolytic Pathway in a Terrestrial Bacterium Cohnella sp. LGH
title_sort characterization of agarolytic pathway in a terrestrial bacterium cohnella sp. lgh
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9008576/
https://www.ncbi.nlm.nih.gov/pubmed/35432256
http://dx.doi.org/10.3389/fmicb.2022.828687
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