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Biochemical Properties of a New Polysaccharide Lyase Family 25 Ulvan Lyase TsUly25B from Marine Bacterium Thalassomonas sp. LD5

Marine macroalgae, contributing much to the bioeconomy, have inspired tremendous attention as sustainable raw materials. Ulvan, as one of the main structural components of green algae cell walls, can be degraded by ulvan lyase through the β-elimination mechanism to obtain oligosaccharides exhibiting...

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Autores principales: Wang, Danni, Li, Yujiao, Han, Lu, Yin, Chengying, Fu, Yongqing, Zhang, Qi, Zhao, Xia, Li, Guoyun, Han, Feng, Yu, Wengong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8955879/
https://www.ncbi.nlm.nih.gov/pubmed/35323467
http://dx.doi.org/10.3390/md20030168
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author Wang, Danni
Li, Yujiao
Han, Lu
Yin, Chengying
Fu, Yongqing
Zhang, Qi
Zhao, Xia
Li, Guoyun
Han, Feng
Yu, Wengong
author_facet Wang, Danni
Li, Yujiao
Han, Lu
Yin, Chengying
Fu, Yongqing
Zhang, Qi
Zhao, Xia
Li, Guoyun
Han, Feng
Yu, Wengong
author_sort Wang, Danni
collection PubMed
description Marine macroalgae, contributing much to the bioeconomy, have inspired tremendous attention as sustainable raw materials. Ulvan, as one of the main structural components of green algae cell walls, can be degraded by ulvan lyase through the β-elimination mechanism to obtain oligosaccharides exhibiting several good physiological activities. Only a few ulvan lyases have been characterized until now. This thesis explores the properties of a new polysaccharide lyase family 25 ulvan lyase TsUly25B from the marine bacterium Thalassomonas sp. LD5. Its protein molecular weight was 54.54 KDa, and it was most active under the conditions of 60 °C and pH 9.0. The K(m) and k(cat) values were 1.01 ± 0.05 mg/mL and 10.52 ± 0.28 s(−1), respectively. TsUly25B was salt-tolerant and NaCl can significantly improve its thermal stability. Over 80% of activity can be preserved after being incubated at 30 °C for two days when the concentration of NaCl in the solution is above 1 M, while 60% can be preserved after incubation at 40 °C for 10 h with 2 M NaCl. TsUly25B adopted an endolytic manner to degrade ulvan polysaccharides, and the main end-products were unsaturated ulvan disaccharides and tetrasaccharides. In conclusion, our research enriches the ulvan lyase library and advances the utilization of ulvan lyases in further fundamental research as well as ulvan oligosaccharides production.
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spelling pubmed-89558792022-03-26 Biochemical Properties of a New Polysaccharide Lyase Family 25 Ulvan Lyase TsUly25B from Marine Bacterium Thalassomonas sp. LD5 Wang, Danni Li, Yujiao Han, Lu Yin, Chengying Fu, Yongqing Zhang, Qi Zhao, Xia Li, Guoyun Han, Feng Yu, Wengong Mar Drugs Article Marine macroalgae, contributing much to the bioeconomy, have inspired tremendous attention as sustainable raw materials. Ulvan, as one of the main structural components of green algae cell walls, can be degraded by ulvan lyase through the β-elimination mechanism to obtain oligosaccharides exhibiting several good physiological activities. Only a few ulvan lyases have been characterized until now. This thesis explores the properties of a new polysaccharide lyase family 25 ulvan lyase TsUly25B from the marine bacterium Thalassomonas sp. LD5. Its protein molecular weight was 54.54 KDa, and it was most active under the conditions of 60 °C and pH 9.0. The K(m) and k(cat) values were 1.01 ± 0.05 mg/mL and 10.52 ± 0.28 s(−1), respectively. TsUly25B was salt-tolerant and NaCl can significantly improve its thermal stability. Over 80% of activity can be preserved after being incubated at 30 °C for two days when the concentration of NaCl in the solution is above 1 M, while 60% can be preserved after incubation at 40 °C for 10 h with 2 M NaCl. TsUly25B adopted an endolytic manner to degrade ulvan polysaccharides, and the main end-products were unsaturated ulvan disaccharides and tetrasaccharides. In conclusion, our research enriches the ulvan lyase library and advances the utilization of ulvan lyases in further fundamental research as well as ulvan oligosaccharides production. MDPI 2022-02-25 /pmc/articles/PMC8955879/ /pubmed/35323467 http://dx.doi.org/10.3390/md20030168 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wang, Danni
Li, Yujiao
Han, Lu
Yin, Chengying
Fu, Yongqing
Zhang, Qi
Zhao, Xia
Li, Guoyun
Han, Feng
Yu, Wengong
Biochemical Properties of a New Polysaccharide Lyase Family 25 Ulvan Lyase TsUly25B from Marine Bacterium Thalassomonas sp. LD5
title Biochemical Properties of a New Polysaccharide Lyase Family 25 Ulvan Lyase TsUly25B from Marine Bacterium Thalassomonas sp. LD5
title_full Biochemical Properties of a New Polysaccharide Lyase Family 25 Ulvan Lyase TsUly25B from Marine Bacterium Thalassomonas sp. LD5
title_fullStr Biochemical Properties of a New Polysaccharide Lyase Family 25 Ulvan Lyase TsUly25B from Marine Bacterium Thalassomonas sp. LD5
title_full_unstemmed Biochemical Properties of a New Polysaccharide Lyase Family 25 Ulvan Lyase TsUly25B from Marine Bacterium Thalassomonas sp. LD5
title_short Biochemical Properties of a New Polysaccharide Lyase Family 25 Ulvan Lyase TsUly25B from Marine Bacterium Thalassomonas sp. LD5
title_sort biochemical properties of a new polysaccharide lyase family 25 ulvan lyase tsuly25b from marine bacterium thalassomonas sp. ld5
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8955879/
https://www.ncbi.nlm.nih.gov/pubmed/35323467
http://dx.doi.org/10.3390/md20030168
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