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Effects of a Non-Conservative Sequence on the Properties of β-glucuronidase from Aspergillus terreus Li-20

We cloned the β-glucuronidase gene (AtGUS) from Aspergillus terreus Li-20 encoding 657 amino acids (aa), which can transform glycyrrhizin into glycyrrhetinic acid monoglucuronide (GAMG) and glycyrrhetinic acid (GA). Based on sequence alignment, the C-terminal non-conservative sequence showed low ide...

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Autores principales: Liu, Yanli, Huangfu, Jie, Qi, Feng, Kaleem, Imdad, E, Wenwen, Li, Chun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3274521/
https://www.ncbi.nlm.nih.gov/pubmed/22347419
http://dx.doi.org/10.1371/journal.pone.0030998
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author Liu, Yanli
Huangfu, Jie
Qi, Feng
Kaleem, Imdad
E, Wenwen
Li, Chun
author_facet Liu, Yanli
Huangfu, Jie
Qi, Feng
Kaleem, Imdad
E, Wenwen
Li, Chun
author_sort Liu, Yanli
collection PubMed
description We cloned the β-glucuronidase gene (AtGUS) from Aspergillus terreus Li-20 encoding 657 amino acids (aa), which can transform glycyrrhizin into glycyrrhetinic acid monoglucuronide (GAMG) and glycyrrhetinic acid (GA). Based on sequence alignment, the C-terminal non-conservative sequence showed low identity with those of other species; thus, the partial sequence AtGUS(-3t) (1–592 aa) was amplified to determine the effects of the non-conservative sequence on the enzymatic properties. AtGUS and AtGUS(-3t) were expressed in E. coli BL21, producing AtGUS-E and AtGUS(-3t)-E, respectively. At the similar optimum temperature (55°C) and pH (AtGUS-E, 6.6; AtGUS(-3t)-E, 7.0) conditions, the thermal stability of AtGUS(-3t)-E was enhanced at 65°C, and the metal ions Co(2+), Ca(2+) and Ni(2+) showed opposite effects on AtGUS-E and AtGUS(-3t)-E, respectively. Furthermore, Km of AtGUS(-3t)-E (1.95 mM) was just nearly one-seventh that of AtGUS-E (12.9 mM), whereas the catalytic efficiency of AtGUS(-3t)-E was 3.2 fold higher than that of AtGUS-E (7.16 vs. 2.24 mM s(−1)), revealing that the truncation of non-conservative sequence can significantly improve the catalytic efficiency of AtGUS. Conformational analysis illustrated significant difference in the secondary structure between AtGUS-E and AtGUS(-3t)-E by circular dichroism (CD). The results showed that the truncation of the non-conservative sequence could preferably alter and influence the stability and catalytic efficiency of enzyme.
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spelling pubmed-32745212012-02-15 Effects of a Non-Conservative Sequence on the Properties of β-glucuronidase from Aspergillus terreus Li-20 Liu, Yanli Huangfu, Jie Qi, Feng Kaleem, Imdad E, Wenwen Li, Chun PLoS One Research Article We cloned the β-glucuronidase gene (AtGUS) from Aspergillus terreus Li-20 encoding 657 amino acids (aa), which can transform glycyrrhizin into glycyrrhetinic acid monoglucuronide (GAMG) and glycyrrhetinic acid (GA). Based on sequence alignment, the C-terminal non-conservative sequence showed low identity with those of other species; thus, the partial sequence AtGUS(-3t) (1–592 aa) was amplified to determine the effects of the non-conservative sequence on the enzymatic properties. AtGUS and AtGUS(-3t) were expressed in E. coli BL21, producing AtGUS-E and AtGUS(-3t)-E, respectively. At the similar optimum temperature (55°C) and pH (AtGUS-E, 6.6; AtGUS(-3t)-E, 7.0) conditions, the thermal stability of AtGUS(-3t)-E was enhanced at 65°C, and the metal ions Co(2+), Ca(2+) and Ni(2+) showed opposite effects on AtGUS-E and AtGUS(-3t)-E, respectively. Furthermore, Km of AtGUS(-3t)-E (1.95 mM) was just nearly one-seventh that of AtGUS-E (12.9 mM), whereas the catalytic efficiency of AtGUS(-3t)-E was 3.2 fold higher than that of AtGUS-E (7.16 vs. 2.24 mM s(−1)), revealing that the truncation of non-conservative sequence can significantly improve the catalytic efficiency of AtGUS. Conformational analysis illustrated significant difference in the secondary structure between AtGUS-E and AtGUS(-3t)-E by circular dichroism (CD). The results showed that the truncation of the non-conservative sequence could preferably alter and influence the stability and catalytic efficiency of enzyme. Public Library of Science 2012-02-07 /pmc/articles/PMC3274521/ /pubmed/22347419 http://dx.doi.org/10.1371/journal.pone.0030998 Text en Liu et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Liu, Yanli
Huangfu, Jie
Qi, Feng
Kaleem, Imdad
E, Wenwen
Li, Chun
Effects of a Non-Conservative Sequence on the Properties of β-glucuronidase from Aspergillus terreus Li-20
title Effects of a Non-Conservative Sequence on the Properties of β-glucuronidase from Aspergillus terreus Li-20
title_full Effects of a Non-Conservative Sequence on the Properties of β-glucuronidase from Aspergillus terreus Li-20
title_fullStr Effects of a Non-Conservative Sequence on the Properties of β-glucuronidase from Aspergillus terreus Li-20
title_full_unstemmed Effects of a Non-Conservative Sequence on the Properties of β-glucuronidase from Aspergillus terreus Li-20
title_short Effects of a Non-Conservative Sequence on the Properties of β-glucuronidase from Aspergillus terreus Li-20
title_sort effects of a non-conservative sequence on the properties of β-glucuronidase from aspergillus terreus li-20
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3274521/
https://www.ncbi.nlm.nih.gov/pubmed/22347419
http://dx.doi.org/10.1371/journal.pone.0030998
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