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Structural modelling and phylogenetic analyses of PgeIF4A2 (Eukaryotic translation initiation factor) from Pennisetum glaucum reveal signature motifs with a role in stress tolerance and development
Eukaryotic translation initiation factor 4A (eIF4A) is an indispensable component of the translation machinery and also play a role in developmental processes and stress alleviation in plants and animals. Different eIF4A isoforms are present in the cytosol of the cell, namely, eIF4A1, eIF4A2, and eI...
Autores principales: | , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Biomedical Informatics
2016
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5357570/ https://www.ncbi.nlm.nih.gov/pubmed/28358146 http://dx.doi.org/10.6026/97320630012416 |
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author | Agarwal, Aakrati Mudgil, Yashwanti Pandey, Saurabh Fartyal, Dhirendra Reddy, Malireddy K |
author_facet | Agarwal, Aakrati Mudgil, Yashwanti Pandey, Saurabh Fartyal, Dhirendra Reddy, Malireddy K |
author_sort | Agarwal, Aakrati |
collection | PubMed |
description | Eukaryotic translation initiation factor 4A (eIF4A) is an indispensable component of the translation machinery and also play a role in developmental processes and stress alleviation in plants and animals. Different eIF4A isoforms are present in the cytosol of the cell, namely, eIF4A1, eIF4A2, and eIF4A3 and their expression is tightly regulated in cap-dependent translation. We revealed the structural model of PgeIF4A2 protein using the crystal structure of Homo sapiens eIF4A3 (PDB ID: 2J0S) as template by Modeller 9.12. The resultant PgeIF4A2 model structure was refined by PROCHECK, ProSA, Verify3D and RMSD that showed the model structure is reliable with 77 % amino acid sequence identity with template. Investigation revealed two conserved signatures for ATP-dependent RNA Helicase DEAD-box conserved site (VLDEADEML) and RNA helicase DEAD-box type, Q-motif in sheet-turn-helix and α-helical region respectively. All these conserved motifs are responsible for response during developmental stages and stress tolerance in plants. |
format | Online Article Text |
id | pubmed-5357570 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2016 |
publisher | Biomedical Informatics |
record_format | MEDLINE/PubMed |
spelling | pubmed-53575702017-03-29 Structural modelling and phylogenetic analyses of PgeIF4A2 (Eukaryotic translation initiation factor) from Pennisetum glaucum reveal signature motifs with a role in stress tolerance and development Agarwal, Aakrati Mudgil, Yashwanti Pandey, Saurabh Fartyal, Dhirendra Reddy, Malireddy K Bioinformation Hypothesis Eukaryotic translation initiation factor 4A (eIF4A) is an indispensable component of the translation machinery and also play a role in developmental processes and stress alleviation in plants and animals. Different eIF4A isoforms are present in the cytosol of the cell, namely, eIF4A1, eIF4A2, and eIF4A3 and their expression is tightly regulated in cap-dependent translation. We revealed the structural model of PgeIF4A2 protein using the crystal structure of Homo sapiens eIF4A3 (PDB ID: 2J0S) as template by Modeller 9.12. The resultant PgeIF4A2 model structure was refined by PROCHECK, ProSA, Verify3D and RMSD that showed the model structure is reliable with 77 % amino acid sequence identity with template. Investigation revealed two conserved signatures for ATP-dependent RNA Helicase DEAD-box conserved site (VLDEADEML) and RNA helicase DEAD-box type, Q-motif in sheet-turn-helix and α-helical region respectively. All these conserved motifs are responsible for response during developmental stages and stress tolerance in plants. Biomedical Informatics 2016-12-19 /pmc/articles/PMC5357570/ /pubmed/28358146 http://dx.doi.org/10.6026/97320630012416 Text en © 2016 Biomedical Informatics http://creativecommons.org/licenses/by/3.0/ This is an Open Access article which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited. This is distributed under the terms of the Creative Commons Attribution License. |
spellingShingle | Hypothesis Agarwal, Aakrati Mudgil, Yashwanti Pandey, Saurabh Fartyal, Dhirendra Reddy, Malireddy K Structural modelling and phylogenetic analyses of PgeIF4A2 (Eukaryotic translation initiation factor) from Pennisetum glaucum reveal signature motifs with a role in stress tolerance and development |
title | Structural modelling and phylogenetic analyses of PgeIF4A2 (Eukaryotic translation initiation factor)
from Pennisetum glaucum reveal signature motifs with a role in stress tolerance and development |
title_full | Structural modelling and phylogenetic analyses of PgeIF4A2 (Eukaryotic translation initiation factor)
from Pennisetum glaucum reveal signature motifs with a role in stress tolerance and development |
title_fullStr | Structural modelling and phylogenetic analyses of PgeIF4A2 (Eukaryotic translation initiation factor)
from Pennisetum glaucum reveal signature motifs with a role in stress tolerance and development |
title_full_unstemmed | Structural modelling and phylogenetic analyses of PgeIF4A2 (Eukaryotic translation initiation factor)
from Pennisetum glaucum reveal signature motifs with a role in stress tolerance and development |
title_short | Structural modelling and phylogenetic analyses of PgeIF4A2 (Eukaryotic translation initiation factor)
from Pennisetum glaucum reveal signature motifs with a role in stress tolerance and development |
title_sort | structural modelling and phylogenetic analyses of pgeif4a2 (eukaryotic translation initiation factor)
from pennisetum glaucum reveal signature motifs with a role in stress tolerance and development |
topic | Hypothesis |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5357570/ https://www.ncbi.nlm.nih.gov/pubmed/28358146 http://dx.doi.org/10.6026/97320630012416 |
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