Cargando…

Molecular Mechanism of Switching of TrkA/p75(NTR) Signaling in Monocrotophos Induced Neurotoxicity

We demonstrate the role of molecular switching of TrkA/p75(NTR) signaling cascade in organophosphate pesticide-Monocrotophos (MCP) induced neurotoxicity in stem cell derived cholinergic neurons and in rat brain. Our in-silico studies reveal that MCP followed the similar pattern of binding as stauros...

Descripción completa

Detalles Bibliográficos
Autores principales: Kumar, Vivek, Gupta, Amit Kumar, Shukla, Rajendra Kumar, Tripathi, Vinay Kumar, Jahan, Sadaf, Pandey, Ankita, Srivastava, Akriti, Agrawal, Megha, Yadav, Sanjay, Khanna, Vinay Kumar, Pant, Aditya Bhushan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4570211/
https://www.ncbi.nlm.nih.gov/pubmed/26370177
http://dx.doi.org/10.1038/srep14038
_version_ 1782390165732327424
author Kumar, Vivek
Gupta, Amit Kumar
Shukla, Rajendra Kumar
Tripathi, Vinay Kumar
Jahan, Sadaf
Pandey, Ankita
Srivastava, Akriti
Agrawal, Megha
Yadav, Sanjay
Khanna, Vinay Kumar
Pant, Aditya Bhushan
author_facet Kumar, Vivek
Gupta, Amit Kumar
Shukla, Rajendra Kumar
Tripathi, Vinay Kumar
Jahan, Sadaf
Pandey, Ankita
Srivastava, Akriti
Agrawal, Megha
Yadav, Sanjay
Khanna, Vinay Kumar
Pant, Aditya Bhushan
author_sort Kumar, Vivek
collection PubMed
description We demonstrate the role of molecular switching of TrkA/p75(NTR) signaling cascade in organophosphate pesticide-Monocrotophos (MCP) induced neurotoxicity in stem cell derived cholinergic neurons and in rat brain. Our in-silico studies reveal that MCP followed the similar pattern of binding as staurosporine and AG-879 (known inhibitors of TrkA) with TrkA protein (PDB ID: 4AOJ) at the ATP binding sites. This binding of MCP to TrkA led to the conformational change in this protein and triggers the cell death cascades. The in-silico findings are validated by observing the down regulated levels of phosphorylated TrkA and its downstream molecules viz., pERK1/2, pAkt and pCREB in MCP-exposed cells. We observe that these MCP induced alterations in pTrkA and downstream signaling molecules are found to be associated with apoptosis and injury to neurons. The down-regulation of TrkA could be linked to increased p75(NTR). The in-vitro studies could be correlated in the rat model. The switching of TrkA/p75(NTR) signaling plays a central role in MCP-induced neural injury in rBNSCs and behavioral changes in exposed rats. Our studies significantly advance the understanding of the switching of TrkA/p75(NTR) that may pave the way for the application of TrkA inducer/p75(NTR) inhibitor for potential therapeutic intervention in various neurodegenerative disorders.
format Online
Article
Text
id pubmed-4570211
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-45702112015-09-28 Molecular Mechanism of Switching of TrkA/p75(NTR) Signaling in Monocrotophos Induced Neurotoxicity Kumar, Vivek Gupta, Amit Kumar Shukla, Rajendra Kumar Tripathi, Vinay Kumar Jahan, Sadaf Pandey, Ankita Srivastava, Akriti Agrawal, Megha Yadav, Sanjay Khanna, Vinay Kumar Pant, Aditya Bhushan Sci Rep Article We demonstrate the role of molecular switching of TrkA/p75(NTR) signaling cascade in organophosphate pesticide-Monocrotophos (MCP) induced neurotoxicity in stem cell derived cholinergic neurons and in rat brain. Our in-silico studies reveal that MCP followed the similar pattern of binding as staurosporine and AG-879 (known inhibitors of TrkA) with TrkA protein (PDB ID: 4AOJ) at the ATP binding sites. This binding of MCP to TrkA led to the conformational change in this protein and triggers the cell death cascades. The in-silico findings are validated by observing the down regulated levels of phosphorylated TrkA and its downstream molecules viz., pERK1/2, pAkt and pCREB in MCP-exposed cells. We observe that these MCP induced alterations in pTrkA and downstream signaling molecules are found to be associated with apoptosis and injury to neurons. The down-regulation of TrkA could be linked to increased p75(NTR). The in-vitro studies could be correlated in the rat model. The switching of TrkA/p75(NTR) signaling plays a central role in MCP-induced neural injury in rBNSCs and behavioral changes in exposed rats. Our studies significantly advance the understanding of the switching of TrkA/p75(NTR) that may pave the way for the application of TrkA inducer/p75(NTR) inhibitor for potential therapeutic intervention in various neurodegenerative disorders. Nature Publishing Group 2015-09-15 /pmc/articles/PMC4570211/ /pubmed/26370177 http://dx.doi.org/10.1038/srep14038 Text en Copyright © 2015, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Kumar, Vivek
Gupta, Amit Kumar
Shukla, Rajendra Kumar
Tripathi, Vinay Kumar
Jahan, Sadaf
Pandey, Ankita
Srivastava, Akriti
Agrawal, Megha
Yadav, Sanjay
Khanna, Vinay Kumar
Pant, Aditya Bhushan
Molecular Mechanism of Switching of TrkA/p75(NTR) Signaling in Monocrotophos Induced Neurotoxicity
title Molecular Mechanism of Switching of TrkA/p75(NTR) Signaling in Monocrotophos Induced Neurotoxicity
title_full Molecular Mechanism of Switching of TrkA/p75(NTR) Signaling in Monocrotophos Induced Neurotoxicity
title_fullStr Molecular Mechanism of Switching of TrkA/p75(NTR) Signaling in Monocrotophos Induced Neurotoxicity
title_full_unstemmed Molecular Mechanism of Switching of TrkA/p75(NTR) Signaling in Monocrotophos Induced Neurotoxicity
title_short Molecular Mechanism of Switching of TrkA/p75(NTR) Signaling in Monocrotophos Induced Neurotoxicity
title_sort molecular mechanism of switching of trka/p75(ntr) signaling in monocrotophos induced neurotoxicity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4570211/
https://www.ncbi.nlm.nih.gov/pubmed/26370177
http://dx.doi.org/10.1038/srep14038
work_keys_str_mv AT kumarvivek molecularmechanismofswitchingoftrkap75ntrsignalinginmonocrotophosinducedneurotoxicity
AT guptaamitkumar molecularmechanismofswitchingoftrkap75ntrsignalinginmonocrotophosinducedneurotoxicity
AT shuklarajendrakumar molecularmechanismofswitchingoftrkap75ntrsignalinginmonocrotophosinducedneurotoxicity
AT tripathivinaykumar molecularmechanismofswitchingoftrkap75ntrsignalinginmonocrotophosinducedneurotoxicity
AT jahansadaf molecularmechanismofswitchingoftrkap75ntrsignalinginmonocrotophosinducedneurotoxicity
AT pandeyankita molecularmechanismofswitchingoftrkap75ntrsignalinginmonocrotophosinducedneurotoxicity
AT srivastavaakriti molecularmechanismofswitchingoftrkap75ntrsignalinginmonocrotophosinducedneurotoxicity
AT agrawalmegha molecularmechanismofswitchingoftrkap75ntrsignalinginmonocrotophosinducedneurotoxicity
AT yadavsanjay molecularmechanismofswitchingoftrkap75ntrsignalinginmonocrotophosinducedneurotoxicity
AT khannavinaykumar molecularmechanismofswitchingoftrkap75ntrsignalinginmonocrotophosinducedneurotoxicity
AT pantadityabhushan molecularmechanismofswitchingoftrkap75ntrsignalinginmonocrotophosinducedneurotoxicity