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“In Silico” Characterization of 3-Phytase A and 3-Phytase B from Aspergillus niger
Phytases are used for feeding monogastric animals, because they hydrolyze phytic acid generating inorganic phosphate. Aspergillus niger 3-phytase A (PDB: 3K4Q) and 3-phytase B (PDB: 1QFX) were characterized using bioinformatic tools. Results showed that both enzymes have highly conserved catalytic p...
Autores principales: | , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Hindawi
2017
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5733987/ https://www.ncbi.nlm.nih.gov/pubmed/29348934 http://dx.doi.org/10.1155/2017/9746191 |
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author | Niño-Gómez, Doris C. Rivera-Hoyos, Claudia M. Morales-Álvarez, Edwin D. Reyes-Montaño, Edgar A. Vargas-Alejo, Nury E. Ramírez-Casallas, Ingrid N. Erkan Türkmen, Kübra Sáenz-Suárez, Homero Sáenz-Moreno, José A. Poutou-Piñales, Raúl A. González-Santos, Janneth Arévalo-Galvis, Azucena |
author_facet | Niño-Gómez, Doris C. Rivera-Hoyos, Claudia M. Morales-Álvarez, Edwin D. Reyes-Montaño, Edgar A. Vargas-Alejo, Nury E. Ramírez-Casallas, Ingrid N. Erkan Türkmen, Kübra Sáenz-Suárez, Homero Sáenz-Moreno, José A. Poutou-Piñales, Raúl A. González-Santos, Janneth Arévalo-Galvis, Azucena |
author_sort | Niño-Gómez, Doris C. |
collection | PubMed |
description | Phytases are used for feeding monogastric animals, because they hydrolyze phytic acid generating inorganic phosphate. Aspergillus niger 3-phytase A (PDB: 3K4Q) and 3-phytase B (PDB: 1QFX) were characterized using bioinformatic tools. Results showed that both enzymes have highly conserved catalytic pockets, supporting their classification as histidine acid phosphatases. 2D structures consist of 43% alpha-helix, 12% beta-sheet, and 45% others and 38% alpha-helix, 12% beta-sheet, and 50% others, respectively, and pI 4.94 and 4.60, aliphatic index 72.25 and 70.26 and average hydrophobicity of −0,304 and −0.330, respectively, suggesting aqueous media interaction. Glycosylation and glycation sites allowed detecting zones that can affect folding and biological activity, suggesting fragmentation. Docking showed that H(59) and H(63) act as nucleophiles and that D(339) and D(319) are proton donor residues. MW of 3K4Q (48.84 kDa) and 1QFX (50.78 kDa) is similar; 1QFX forms homodimers which will originate homotetramers with several catalytic center accessible to the ligand. 3K4Q is less stable (instability index 45.41) than 1QFX (instability index 33.66), but the estimated lifespan for 3K4Q is superior. Van der Waals interactions generate hydrogen bonds between the active center and O(2) or H of the phytic acid phosphate groups, providing greater stability to these temporal molecular interactions. |
format | Online Article Text |
id | pubmed-5733987 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2017 |
publisher | Hindawi |
record_format | MEDLINE/PubMed |
spelling | pubmed-57339872018-01-18 “In Silico” Characterization of 3-Phytase A and 3-Phytase B from Aspergillus niger Niño-Gómez, Doris C. Rivera-Hoyos, Claudia M. Morales-Álvarez, Edwin D. Reyes-Montaño, Edgar A. Vargas-Alejo, Nury E. Ramírez-Casallas, Ingrid N. Erkan Türkmen, Kübra Sáenz-Suárez, Homero Sáenz-Moreno, José A. Poutou-Piñales, Raúl A. González-Santos, Janneth Arévalo-Galvis, Azucena Enzyme Res Research Article Phytases are used for feeding monogastric animals, because they hydrolyze phytic acid generating inorganic phosphate. Aspergillus niger 3-phytase A (PDB: 3K4Q) and 3-phytase B (PDB: 1QFX) were characterized using bioinformatic tools. Results showed that both enzymes have highly conserved catalytic pockets, supporting their classification as histidine acid phosphatases. 2D structures consist of 43% alpha-helix, 12% beta-sheet, and 45% others and 38% alpha-helix, 12% beta-sheet, and 50% others, respectively, and pI 4.94 and 4.60, aliphatic index 72.25 and 70.26 and average hydrophobicity of −0,304 and −0.330, respectively, suggesting aqueous media interaction. Glycosylation and glycation sites allowed detecting zones that can affect folding and biological activity, suggesting fragmentation. Docking showed that H(59) and H(63) act as nucleophiles and that D(339) and D(319) are proton donor residues. MW of 3K4Q (48.84 kDa) and 1QFX (50.78 kDa) is similar; 1QFX forms homodimers which will originate homotetramers with several catalytic center accessible to the ligand. 3K4Q is less stable (instability index 45.41) than 1QFX (instability index 33.66), but the estimated lifespan for 3K4Q is superior. Van der Waals interactions generate hydrogen bonds between the active center and O(2) or H of the phytic acid phosphate groups, providing greater stability to these temporal molecular interactions. Hindawi 2017 2017-11-20 /pmc/articles/PMC5733987/ /pubmed/29348934 http://dx.doi.org/10.1155/2017/9746191 Text en Copyright © 2017 Doris C. Niño-Gómez et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Research Article Niño-Gómez, Doris C. Rivera-Hoyos, Claudia M. Morales-Álvarez, Edwin D. Reyes-Montaño, Edgar A. Vargas-Alejo, Nury E. Ramírez-Casallas, Ingrid N. Erkan Türkmen, Kübra Sáenz-Suárez, Homero Sáenz-Moreno, José A. Poutou-Piñales, Raúl A. González-Santos, Janneth Arévalo-Galvis, Azucena “In Silico” Characterization of 3-Phytase A and 3-Phytase B from Aspergillus niger |
title | “In Silico” Characterization of 3-Phytase A and 3-Phytase B from Aspergillus niger |
title_full | “In Silico” Characterization of 3-Phytase A and 3-Phytase B from Aspergillus niger |
title_fullStr | “In Silico” Characterization of 3-Phytase A and 3-Phytase B from Aspergillus niger |
title_full_unstemmed | “In Silico” Characterization of 3-Phytase A and 3-Phytase B from Aspergillus niger |
title_short | “In Silico” Characterization of 3-Phytase A and 3-Phytase B from Aspergillus niger |
title_sort | “in silico” characterization of 3-phytase a and 3-phytase b from aspergillus niger |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5733987/ https://www.ncbi.nlm.nih.gov/pubmed/29348934 http://dx.doi.org/10.1155/2017/9746191 |
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