Original ArticleInternational Journal of Pharmaceutical InvestigationVol. 9 | Issue 2 | 2019 | pp. 43–46Open access
Comparative Modeling, Characterization and Energy Minimization Studies of Aquaporin 9: An Exclusive Target Protein for Rheumatoid Arthritis
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- 1 Faculty of Biotechnology, Institute of Bio-Sciences and Technology, Shri Ramswaroop Memorial University, Barabanki- 225003, Uttar Pradesh, INDIA.
- 2 Amity Institute of Biotechnology, Amity University Uttar-Pradesh, Lucknow Campus, Malhour Gomti Nagar Extension, Lucknow-227105, Uttar Pradesh, INDIA.
Published in International Journal of Pharmaceutical Investigation
Correspondence: Sachidanand Singh
Faculty of Biotechnology, Institute of Bio-Sciences and Technology, Shri Ramswaroop Memorial University, Barabanki- 225003, Uttar Pradesh, INDIA.
Email: dean.fobt@srmu.ac.in
Copyright: © 2019 Manuscript Technomedia. This is an open access article.
- Published:
- Aug 13, 2019
How to cite
Das, S., Johri, P., Sharma, R., Kashyap, M., Singh, S., & Singh, S. (2019). Comparative Modeling, Characterization and Energy Minimization Studies of Aquaporin 9: An Exclusive Target Protein for Rheumatoid Arthritis. International Journal of Pharmaceutical Investigation, 9(2), 43–46. https://doi.org/10.5330/ijpi.2019.2.9
Abstract
Background: In the absence of the experimentally determined structure, computer aided protein structure prediction, evaluation and their energeti cally stable structure identification is the only way out of the problem. The main objective of the study was to perform the structure prediction of Aqua porin 9 (APQ9) the most targeted protein for rheumatoid arthritis, using in-silico methodology and validate the generated models. Methods: Secondary structure prediction of AQP9 was performed using GOR4, SOPMA and CFSSP algorithm. This was followed by the three-dimensional structure identification from MODELLER, LOMETS and MUSTER server. Many models were built and the best amongst them was identified on the basis of their DOPE score. RAMPAGE was used to validate these models and finally the selected model was energetically stabilized. Results: Amongst the 4 predicted models, model predicted using MODELLER software with 1FX8 PDB template (MODELER MODEL 2) was selected as the best. This model showed the best results in Ramachandran plot valida tion. In the Ramachandran Plot, 223 residues (95.7%) were found to be in the favored region, 9 residues (3.9%) in the Allowed region and the rest 1 residue (0.4%) in the Outlier region. Energy minimization calculations were also done for the four models using SPBDV software and Modeler Model 2 model showed the least energy (E= 3484.038 KJ/mol). Conclusion: The accurate three-dimensional structure prediction of proteins is a grand challenge now. Massive amount of sequence and structural data is available now with low cost. The choice of one or other method depends solely on the type of protein sequence and the quality of the predicted structure. The accurate structure prediction, fold recognition, energy calculation, side chain modeling and target template identification are the crucial edges of the molecular modeling process which need to be scrutinized for the best predicted model.
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Article metadata
| Title | Comparative Modeling, Characterization and Energy Minimization Studies of Aquaporin 9: An Exclusive Target Protein for Rheumatoid Arthritis |
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| Authors | Surojeet Das; Parul Johri; Ruchi Sharma; Monika Kashyap; Shivani Singh; Sachidanand Singh |
| Affiliations | Faculty of Biotechnology, Institute of Bio-Sciences and Technology, Shri Ramswaroop Memorial University, Barabanki- 225003, Uttar Pradesh, INDIA.; Amity Institute of Biotechnology, Amity University Uttar-Pradesh, Lucknow Campus, Malhour Gomti Nagar Extension, Lucknow-227105, Uttar Pradesh, INDIA. |
| Corresponding author | dean.fobt@srmu.ac.in |
| Journal | International Journal of Pharmaceutical Investigation |
| Volume / Issue | Vol. 9, Issue 2 (2019) |
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