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Network metrics, structural dynamics and density functional theory calculations identified a novel Ursodeoxycholic Acid derivative against therapeutic target Parkin for Parkinson's disease

Parkinson's disease (PD) has been designated as one of the priority neurodegenerative disorders worldwide. Although diagnostic biomarkers have been identified, early onset detection and targeted therapy are still limited. An integrated systems and structural biology approach were adopted to ide...

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Autores principales: Naha, Aniket, Banerjee, Sanjukta, Debroy, Reetika, Basu, Soumya, Ashok, Gayathri, Priyamvada, P., Kumar, Hithesh, Preethi, A.R., Singh, Harpreet, Anbarasu, Anand, Ramaiah, Sudha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Research Network of Computational and Structural Biotechnology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9399899/
https://www.ncbi.nlm.nih.gov/pubmed/36051887
http://dx.doi.org/10.1016/j.csbj.2022.08.017
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author Naha, Aniket
Banerjee, Sanjukta
Debroy, Reetika
Basu, Soumya
Ashok, Gayathri
Priyamvada, P.
Kumar, Hithesh
Preethi, A.R.
Singh, Harpreet
Anbarasu, Anand
Ramaiah, Sudha
author_facet Naha, Aniket
Banerjee, Sanjukta
Debroy, Reetika
Basu, Soumya
Ashok, Gayathri
Priyamvada, P.
Kumar, Hithesh
Preethi, A.R.
Singh, Harpreet
Anbarasu, Anand
Ramaiah, Sudha
author_sort Naha, Aniket
collection PubMed
description Parkinson's disease (PD) has been designated as one of the priority neurodegenerative disorders worldwide. Although diagnostic biomarkers have been identified, early onset detection and targeted therapy are still limited. An integrated systems and structural biology approach were adopted to identify therapeutic targets for PD. From a set of 49 PD associated genes, a densely connected interactome was constructed. Based on centrality indices, degree of interaction and functional enrichments, LRRK2, PARK2, PARK7, PINK1 and SNCA were identified as the hub-genes. PARK2 (Parkin) was finalized as a potent theranostic candidate marker due to its strong association (score > 0.99) with α-synuclein (SNCA), which directly regulates PD progression. Besides, modeling and validation of Parkin structure, an extensive virtual-screening revealed small (commercially available) inhibitors against Parkin. Molecule-258 (ZINC5022267) was selected as a potent candidate based on pharmacokinetic profiles, Density Functional Theory (DFT) energy calculations (ΔE = 6.93 eV) and high binding affinity (Binding energy = -6.57 ± 0.1 kcal/mol; Inhibition constant = 15.35 µM) against Parkin. Molecular dynamics simulation of protein-inhibitor complexes further strengthened the therapeutic propositions with stable trajectories (low structural fluctuations), hydrogen bonding patterns and interactive energies (>0kJ/mol). Our study encourages experimental validations of the novel drug candidate to prevent the auto-inhibition of Parkin mediated ubiquitination in PD.
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spelling pubmed-93998992022-08-31 Network metrics, structural dynamics and density functional theory calculations identified a novel Ursodeoxycholic Acid derivative against therapeutic target Parkin for Parkinson's disease Naha, Aniket Banerjee, Sanjukta Debroy, Reetika Basu, Soumya Ashok, Gayathri Priyamvada, P. Kumar, Hithesh Preethi, A.R. Singh, Harpreet Anbarasu, Anand Ramaiah, Sudha Comput Struct Biotechnol J Research Article Parkinson's disease (PD) has been designated as one of the priority neurodegenerative disorders worldwide. Although diagnostic biomarkers have been identified, early onset detection and targeted therapy are still limited. An integrated systems and structural biology approach were adopted to identify therapeutic targets for PD. From a set of 49 PD associated genes, a densely connected interactome was constructed. Based on centrality indices, degree of interaction and functional enrichments, LRRK2, PARK2, PARK7, PINK1 and SNCA were identified as the hub-genes. PARK2 (Parkin) was finalized as a potent theranostic candidate marker due to its strong association (score > 0.99) with α-synuclein (SNCA), which directly regulates PD progression. Besides, modeling and validation of Parkin structure, an extensive virtual-screening revealed small (commercially available) inhibitors against Parkin. Molecule-258 (ZINC5022267) was selected as a potent candidate based on pharmacokinetic profiles, Density Functional Theory (DFT) energy calculations (ΔE = 6.93 eV) and high binding affinity (Binding energy = -6.57 ± 0.1 kcal/mol; Inhibition constant = 15.35 µM) against Parkin. Molecular dynamics simulation of protein-inhibitor complexes further strengthened the therapeutic propositions with stable trajectories (low structural fluctuations), hydrogen bonding patterns and interactive energies (>0kJ/mol). Our study encourages experimental validations of the novel drug candidate to prevent the auto-inhibition of Parkin mediated ubiquitination in PD. Research Network of Computational and Structural Biotechnology 2022-08-10 /pmc/articles/PMC9399899/ /pubmed/36051887 http://dx.doi.org/10.1016/j.csbj.2022.08.017 Text en © 2022 Published by Elsevier B.V. on behalf of Research Network of Computational and Structural Biotechnology. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Naha, Aniket
Banerjee, Sanjukta
Debroy, Reetika
Basu, Soumya
Ashok, Gayathri
Priyamvada, P.
Kumar, Hithesh
Preethi, A.R.
Singh, Harpreet
Anbarasu, Anand
Ramaiah, Sudha
Network metrics, structural dynamics and density functional theory calculations identified a novel Ursodeoxycholic Acid derivative against therapeutic target Parkin for Parkinson's disease
title Network metrics, structural dynamics and density functional theory calculations identified a novel Ursodeoxycholic Acid derivative against therapeutic target Parkin for Parkinson's disease
title_full Network metrics, structural dynamics and density functional theory calculations identified a novel Ursodeoxycholic Acid derivative against therapeutic target Parkin for Parkinson's disease
title_fullStr Network metrics, structural dynamics and density functional theory calculations identified a novel Ursodeoxycholic Acid derivative against therapeutic target Parkin for Parkinson's disease
title_full_unstemmed Network metrics, structural dynamics and density functional theory calculations identified a novel Ursodeoxycholic Acid derivative against therapeutic target Parkin for Parkinson's disease
title_short Network metrics, structural dynamics and density functional theory calculations identified a novel Ursodeoxycholic Acid derivative against therapeutic target Parkin for Parkinson's disease
title_sort network metrics, structural dynamics and density functional theory calculations identified a novel ursodeoxycholic acid derivative against therapeutic target parkin for parkinson's disease
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9399899/
https://www.ncbi.nlm.nih.gov/pubmed/36051887
http://dx.doi.org/10.1016/j.csbj.2022.08.017
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