Cargando…

Computational Simulations Identify Pyrrolidine-2,3-Dione Derivatives as Novel Inhibitors of Cdk5/p25 Complex to Attenuate Alzheimer’s Pathology

Mechanistically, neurotoxic insults provoke Ca(2+)-mediated calpain activation, which cleaves the cytoplasmic region of membrane-embedded p35 and produces its truncated form p25. Upon physical interaction, cyclin-dependent kinase 5 (Cdk5) and p25 forms hyperactivated Cdk5/p25 complex and causes seve...

Descripción completa

Detalles Bibliográficos
Autores principales: Zeb, Amir, Kim, Donghwan, Alam, Sayed Ibrar, Son, Minky, Kumar, Raj, Rampogu, Shailima, Parameswaran, Saravanan, Shelake, Rahul Mahadev, Rana, Rabia Mukhtar, Parate, Shraddha, Kim, Jae-Yean, Lee, Keun Woo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6572193/
https://www.ncbi.nlm.nih.gov/pubmed/31137734
http://dx.doi.org/10.3390/jcm8050746
_version_ 1783427583142002688
author Zeb, Amir
Kim, Donghwan
Alam, Sayed Ibrar
Son, Minky
Kumar, Raj
Rampogu, Shailima
Parameswaran, Saravanan
Shelake, Rahul Mahadev
Rana, Rabia Mukhtar
Parate, Shraddha
Kim, Jae-Yean
Lee, Keun Woo
author_facet Zeb, Amir
Kim, Donghwan
Alam, Sayed Ibrar
Son, Minky
Kumar, Raj
Rampogu, Shailima
Parameswaran, Saravanan
Shelake, Rahul Mahadev
Rana, Rabia Mukhtar
Parate, Shraddha
Kim, Jae-Yean
Lee, Keun Woo
author_sort Zeb, Amir
collection PubMed
description Mechanistically, neurotoxic insults provoke Ca(2+)-mediated calpain activation, which cleaves the cytoplasmic region of membrane-embedded p35 and produces its truncated form p25. Upon physical interaction, cyclin-dependent kinase 5 (Cdk5) and p25 forms hyperactivated Cdk5/p25 complex and causes severe neuropathological aberrations including hyperphosphorylated tau-mediated neurofibrillary tangles formation, Alzheimer’s symptoms, and neuronal death. Therefore, the inhibition of Cdk5/p25 complex may relieve p-tau-mediated Alzheimer’s pathology. Herein, computational simulations have identified pyrrolidine-2,3-dione derivatives as novel inhibitors of Cdk5/p25 complex. A ligand-based pharmacophore was designed and employed as 3D query to retrieve drug-like molecules from chemical databases. By molecular docking, drug-like molecules obtaining dock score > 67.67 (Goldcore of the reference compound) were identified. Molecular dynamics simulation and binding free energy calculation retrieved four pyrrolidine-2,3-dione derivatives as novel candidate inhibitors of Cdk5/p25. The root means square deviation of Cdk5/p25 in complex with candidate inhibitors obtained an average value of ~2.15 Å during the 30 ns simulation period. Molecular interactions analysis suggested that each inhibitor occupied the ATP-binding site of Cdk5/p25 and formed stable interactions. Finally, the binding free energy estimation suggested that each inhibitor had lowest binding energy than the reference compound (−113.10 kJ/mol) to recapitulate their strong binding with Cdk5/p25. Overall, these inhibitors could mitigate tau-mediated Alzheimer’s phenotype.
format Online
Article
Text
id pubmed-6572193
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-65721932019-06-18 Computational Simulations Identify Pyrrolidine-2,3-Dione Derivatives as Novel Inhibitors of Cdk5/p25 Complex to Attenuate Alzheimer’s Pathology Zeb, Amir Kim, Donghwan Alam, Sayed Ibrar Son, Minky Kumar, Raj Rampogu, Shailima Parameswaran, Saravanan Shelake, Rahul Mahadev Rana, Rabia Mukhtar Parate, Shraddha Kim, Jae-Yean Lee, Keun Woo J Clin Med Article Mechanistically, neurotoxic insults provoke Ca(2+)-mediated calpain activation, which cleaves the cytoplasmic region of membrane-embedded p35 and produces its truncated form p25. Upon physical interaction, cyclin-dependent kinase 5 (Cdk5) and p25 forms hyperactivated Cdk5/p25 complex and causes severe neuropathological aberrations including hyperphosphorylated tau-mediated neurofibrillary tangles formation, Alzheimer’s symptoms, and neuronal death. Therefore, the inhibition of Cdk5/p25 complex may relieve p-tau-mediated Alzheimer’s pathology. Herein, computational simulations have identified pyrrolidine-2,3-dione derivatives as novel inhibitors of Cdk5/p25 complex. A ligand-based pharmacophore was designed and employed as 3D query to retrieve drug-like molecules from chemical databases. By molecular docking, drug-like molecules obtaining dock score > 67.67 (Goldcore of the reference compound) were identified. Molecular dynamics simulation and binding free energy calculation retrieved four pyrrolidine-2,3-dione derivatives as novel candidate inhibitors of Cdk5/p25. The root means square deviation of Cdk5/p25 in complex with candidate inhibitors obtained an average value of ~2.15 Å during the 30 ns simulation period. Molecular interactions analysis suggested that each inhibitor occupied the ATP-binding site of Cdk5/p25 and formed stable interactions. Finally, the binding free energy estimation suggested that each inhibitor had lowest binding energy than the reference compound (−113.10 kJ/mol) to recapitulate their strong binding with Cdk5/p25. Overall, these inhibitors could mitigate tau-mediated Alzheimer’s phenotype. MDPI 2019-05-24 /pmc/articles/PMC6572193/ /pubmed/31137734 http://dx.doi.org/10.3390/jcm8050746 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zeb, Amir
Kim, Donghwan
Alam, Sayed Ibrar
Son, Minky
Kumar, Raj
Rampogu, Shailima
Parameswaran, Saravanan
Shelake, Rahul Mahadev
Rana, Rabia Mukhtar
Parate, Shraddha
Kim, Jae-Yean
Lee, Keun Woo
Computational Simulations Identify Pyrrolidine-2,3-Dione Derivatives as Novel Inhibitors of Cdk5/p25 Complex to Attenuate Alzheimer’s Pathology
title Computational Simulations Identify Pyrrolidine-2,3-Dione Derivatives as Novel Inhibitors of Cdk5/p25 Complex to Attenuate Alzheimer’s Pathology
title_full Computational Simulations Identify Pyrrolidine-2,3-Dione Derivatives as Novel Inhibitors of Cdk5/p25 Complex to Attenuate Alzheimer’s Pathology
title_fullStr Computational Simulations Identify Pyrrolidine-2,3-Dione Derivatives as Novel Inhibitors of Cdk5/p25 Complex to Attenuate Alzheimer’s Pathology
title_full_unstemmed Computational Simulations Identify Pyrrolidine-2,3-Dione Derivatives as Novel Inhibitors of Cdk5/p25 Complex to Attenuate Alzheimer’s Pathology
title_short Computational Simulations Identify Pyrrolidine-2,3-Dione Derivatives as Novel Inhibitors of Cdk5/p25 Complex to Attenuate Alzheimer’s Pathology
title_sort computational simulations identify pyrrolidine-2,3-dione derivatives as novel inhibitors of cdk5/p25 complex to attenuate alzheimer’s pathology
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6572193/
https://www.ncbi.nlm.nih.gov/pubmed/31137734
http://dx.doi.org/10.3390/jcm8050746
work_keys_str_mv AT zebamir computationalsimulationsidentifypyrrolidine23dionederivativesasnovelinhibitorsofcdk5p25complextoattenuatealzheimerspathology
AT kimdonghwan computationalsimulationsidentifypyrrolidine23dionederivativesasnovelinhibitorsofcdk5p25complextoattenuatealzheimerspathology
AT alamsayedibrar computationalsimulationsidentifypyrrolidine23dionederivativesasnovelinhibitorsofcdk5p25complextoattenuatealzheimerspathology
AT sonminky computationalsimulationsidentifypyrrolidine23dionederivativesasnovelinhibitorsofcdk5p25complextoattenuatealzheimerspathology
AT kumarraj computationalsimulationsidentifypyrrolidine23dionederivativesasnovelinhibitorsofcdk5p25complextoattenuatealzheimerspathology
AT rampogushailima computationalsimulationsidentifypyrrolidine23dionederivativesasnovelinhibitorsofcdk5p25complextoattenuatealzheimerspathology
AT parameswaransaravanan computationalsimulationsidentifypyrrolidine23dionederivativesasnovelinhibitorsofcdk5p25complextoattenuatealzheimerspathology
AT shelakerahulmahadev computationalsimulationsidentifypyrrolidine23dionederivativesasnovelinhibitorsofcdk5p25complextoattenuatealzheimerspathology
AT ranarabiamukhtar computationalsimulationsidentifypyrrolidine23dionederivativesasnovelinhibitorsofcdk5p25complextoattenuatealzheimerspathology
AT parateshraddha computationalsimulationsidentifypyrrolidine23dionederivativesasnovelinhibitorsofcdk5p25complextoattenuatealzheimerspathology
AT kimjaeyean computationalsimulationsidentifypyrrolidine23dionederivativesasnovelinhibitorsofcdk5p25complextoattenuatealzheimerspathology
AT leekeunwoo computationalsimulationsidentifypyrrolidine23dionederivativesasnovelinhibitorsofcdk5p25complextoattenuatealzheimerspathology