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New Insights into the Role of T3 Loop in Determining Catalytic Efficiency of GH28 Endo-Polygalacturonases

Intramolecular mobility and conformational changes of flexible loops have important roles in the structural and functional integrity of proteins. The Achaetomium sp. Xz8 endo-polygalacturonase (PG8fn) of glycoside hydrolase (GH) family 28 is distinguished for its high catalytic activity (28,000 U/mg...

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Autores principales: Tu, Tao, Meng, Kun, Luo, Huiying, Turunen, Ossi, Zhang, Lujia, Cheng, Yanli, Su, Xiaoyun, Ma, Rui, Shi, Pengjun, Wang, Yaru, Yang, Peilong, Yao, Bin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4556634/
https://www.ncbi.nlm.nih.gov/pubmed/26327390
http://dx.doi.org/10.1371/journal.pone.0135413
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author Tu, Tao
Meng, Kun
Luo, Huiying
Turunen, Ossi
Zhang, Lujia
Cheng, Yanli
Su, Xiaoyun
Ma, Rui
Shi, Pengjun
Wang, Yaru
Yang, Peilong
Yao, Bin
author_facet Tu, Tao
Meng, Kun
Luo, Huiying
Turunen, Ossi
Zhang, Lujia
Cheng, Yanli
Su, Xiaoyun
Ma, Rui
Shi, Pengjun
Wang, Yaru
Yang, Peilong
Yao, Bin
author_sort Tu, Tao
collection PubMed
description Intramolecular mobility and conformational changes of flexible loops have important roles in the structural and functional integrity of proteins. The Achaetomium sp. Xz8 endo-polygalacturonase (PG8fn) of glycoside hydrolase (GH) family 28 is distinguished for its high catalytic activity (28,000 U/mg). Structure modeling indicated that PG8fn has a flexible T3 loop that folds partly above the substrate in the active site, and forms a hydrogen bond to the substrate by a highly conserved residue Asn94 in the active site cleft. Our research investigates the catalytic roles of Asn94 in T3 loop which is located above the catalytic residues on one side of the substrate. Molecular dynamics simulation performed on the mutant N94A revealed the loss of the hydrogen bond formed by the hydroxyl group at O34 of pentagalacturonic acid and the crucial ND2 of Asn94 and the consequent detachment and rotation of the substrate away from the active site, and that on N94Q caused the substrate to drift away from its place due to the longer side chain. In line with the simulations, site-directed mutagenesis at this site showed that this position is very sensitive to amino acid substitutions. Except for the altered K (m) values from 0.32 (wild type PG8fn) to 0.75–4.74 mg/ml, all mutants displayed remarkably lowered k (cat) (~3–20,000 fold) and k (cat)/K (m) (~8–187,500 fold) values and significantly increased △(△G) values (5.92–33.47 kJ/mol). Taken together, Asn94 in the GH28 T3 loop has a critical role in positioning the substrate in a correct way close to the catalytic residues.
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spelling pubmed-45566342015-09-10 New Insights into the Role of T3 Loop in Determining Catalytic Efficiency of GH28 Endo-Polygalacturonases Tu, Tao Meng, Kun Luo, Huiying Turunen, Ossi Zhang, Lujia Cheng, Yanli Su, Xiaoyun Ma, Rui Shi, Pengjun Wang, Yaru Yang, Peilong Yao, Bin PLoS One Research Article Intramolecular mobility and conformational changes of flexible loops have important roles in the structural and functional integrity of proteins. The Achaetomium sp. Xz8 endo-polygalacturonase (PG8fn) of glycoside hydrolase (GH) family 28 is distinguished for its high catalytic activity (28,000 U/mg). Structure modeling indicated that PG8fn has a flexible T3 loop that folds partly above the substrate in the active site, and forms a hydrogen bond to the substrate by a highly conserved residue Asn94 in the active site cleft. Our research investigates the catalytic roles of Asn94 in T3 loop which is located above the catalytic residues on one side of the substrate. Molecular dynamics simulation performed on the mutant N94A revealed the loss of the hydrogen bond formed by the hydroxyl group at O34 of pentagalacturonic acid and the crucial ND2 of Asn94 and the consequent detachment and rotation of the substrate away from the active site, and that on N94Q caused the substrate to drift away from its place due to the longer side chain. In line with the simulations, site-directed mutagenesis at this site showed that this position is very sensitive to amino acid substitutions. Except for the altered K (m) values from 0.32 (wild type PG8fn) to 0.75–4.74 mg/ml, all mutants displayed remarkably lowered k (cat) (~3–20,000 fold) and k (cat)/K (m) (~8–187,500 fold) values and significantly increased △(△G) values (5.92–33.47 kJ/mol). Taken together, Asn94 in the GH28 T3 loop has a critical role in positioning the substrate in a correct way close to the catalytic residues. Public Library of Science 2015-09-01 /pmc/articles/PMC4556634/ /pubmed/26327390 http://dx.doi.org/10.1371/journal.pone.0135413 Text en © 2015 Tu 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
Tu, Tao
Meng, Kun
Luo, Huiying
Turunen, Ossi
Zhang, Lujia
Cheng, Yanli
Su, Xiaoyun
Ma, Rui
Shi, Pengjun
Wang, Yaru
Yang, Peilong
Yao, Bin
New Insights into the Role of T3 Loop in Determining Catalytic Efficiency of GH28 Endo-Polygalacturonases
title New Insights into the Role of T3 Loop in Determining Catalytic Efficiency of GH28 Endo-Polygalacturonases
title_full New Insights into the Role of T3 Loop in Determining Catalytic Efficiency of GH28 Endo-Polygalacturonases
title_fullStr New Insights into the Role of T3 Loop in Determining Catalytic Efficiency of GH28 Endo-Polygalacturonases
title_full_unstemmed New Insights into the Role of T3 Loop in Determining Catalytic Efficiency of GH28 Endo-Polygalacturonases
title_short New Insights into the Role of T3 Loop in Determining Catalytic Efficiency of GH28 Endo-Polygalacturonases
title_sort new insights into the role of t3 loop in determining catalytic efficiency of gh28 endo-polygalacturonases
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4556634/
https://www.ncbi.nlm.nih.gov/pubmed/26327390
http://dx.doi.org/10.1371/journal.pone.0135413
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