Computational investigation of the impact of the ghrelin hormone gene variation (R51q) on the hormone-receptor binding pattern.

Ghrelin is a peptide hormone made up of 28 amino acids. It is involved in various biological processes, including the stimulation of growth hormone release, control of food intake, and metabolic and cytoprotective effects. In 1999, this hormone was identified as a ligand for the GHSR1a growth hormon...

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Main Authors: Adil, Baraa, Shahar, Saleha, Amran, Syazwani I., Omar, Mohd. S. S., Naser, M. Abu
Format: Article
Language:English
Published: Dr. Yashwant Research Labs Pvt. Ltd. 2023
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Online Access:http://eprints.utm.my/105828/1/SalehaShahar2023_ComputationalInvestigationoftheImpactoftheChrelin.pdf
http://eprints.utm.my/105828/
http://dx.doi.org/10.25258/ijpqa.14.1.34
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Institution: Universiti Teknologi Malaysia
Language: English
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spelling my.utm.1058282024-05-20T06:44:13Z http://eprints.utm.my/105828/ Computational investigation of the impact of the ghrelin hormone gene variation (R51q) on the hormone-receptor binding pattern. Adil, Baraa Shahar, Saleha Amran, Syazwani I. Omar, Mohd. S. S. Naser, M. Abu Q Science (General) QH301 Biology Ghrelin is a peptide hormone made up of 28 amino acids. It is involved in various biological processes, including the stimulation of growth hormone release, control of food intake, and metabolic and cytoprotective effects. In 1999, this hormone was identified as a ligand for the GHSR1a growth hormone secretagogue receptor. Ghrelin hormone-receptor complexes have been modeled in a few previous in-silico studies, but none of them have investigated the effects of the gene variation rs34911341/(R51Q) on the full-length ghrelin model and on the hormone-receptor binding. It was established that the full-length ghrelin model’s secondary structure was unaffected by the R to Q amino acid substitution. Additionally, the mutant hormone-receptor complex exhibited better outcomes and altered the molecular interactions between the mutant ligand and the receptor by creating novel interactions, according to the post-molecular dynamic simulation analysis. Dr. Yashwant Research Labs Pvt. Ltd. 2023-03 Article PeerReviewed application/pdf en http://eprints.utm.my/105828/1/SalehaShahar2023_ComputationalInvestigationoftheImpactoftheChrelin.pdf Adil, Baraa and Shahar, Saleha and Amran, Syazwani I. and Omar, Mohd. S. S. and Naser, M. Abu (2023) Computational investigation of the impact of the ghrelin hormone gene variation (R51q) on the hormone-receptor binding pattern. International Journal of Pharmaceutical Quality Assurance, 14 (1). pp. 196-202. ISSN 0975-9506 http://dx.doi.org/10.25258/ijpqa.14.1.34 DOI: 10.25258/ijpqa.14.1.34
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic Q Science (General)
QH301 Biology
spellingShingle Q Science (General)
QH301 Biology
Adil, Baraa
Shahar, Saleha
Amran, Syazwani I.
Omar, Mohd. S. S.
Naser, M. Abu
Computational investigation of the impact of the ghrelin hormone gene variation (R51q) on the hormone-receptor binding pattern.
description Ghrelin is a peptide hormone made up of 28 amino acids. It is involved in various biological processes, including the stimulation of growth hormone release, control of food intake, and metabolic and cytoprotective effects. In 1999, this hormone was identified as a ligand for the GHSR1a growth hormone secretagogue receptor. Ghrelin hormone-receptor complexes have been modeled in a few previous in-silico studies, but none of them have investigated the effects of the gene variation rs34911341/(R51Q) on the full-length ghrelin model and on the hormone-receptor binding. It was established that the full-length ghrelin model’s secondary structure was unaffected by the R to Q amino acid substitution. Additionally, the mutant hormone-receptor complex exhibited better outcomes and altered the molecular interactions between the mutant ligand and the receptor by creating novel interactions, according to the post-molecular dynamic simulation analysis.
format Article
author Adil, Baraa
Shahar, Saleha
Amran, Syazwani I.
Omar, Mohd. S. S.
Naser, M. Abu
author_facet Adil, Baraa
Shahar, Saleha
Amran, Syazwani I.
Omar, Mohd. S. S.
Naser, M. Abu
author_sort Adil, Baraa
title Computational investigation of the impact of the ghrelin hormone gene variation (R51q) on the hormone-receptor binding pattern.
title_short Computational investigation of the impact of the ghrelin hormone gene variation (R51q) on the hormone-receptor binding pattern.
title_full Computational investigation of the impact of the ghrelin hormone gene variation (R51q) on the hormone-receptor binding pattern.
title_fullStr Computational investigation of the impact of the ghrelin hormone gene variation (R51q) on the hormone-receptor binding pattern.
title_full_unstemmed Computational investigation of the impact of the ghrelin hormone gene variation (R51q) on the hormone-receptor binding pattern.
title_sort computational investigation of the impact of the ghrelin hormone gene variation (r51q) on the hormone-receptor binding pattern.
publisher Dr. Yashwant Research Labs Pvt. Ltd.
publishDate 2023
url http://eprints.utm.my/105828/1/SalehaShahar2023_ComputationalInvestigationoftheImpactoftheChrelin.pdf
http://eprints.utm.my/105828/
http://dx.doi.org/10.25258/ijpqa.14.1.34
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