Cargando…

MK2a inhibitor CMPD1 abrogates chikungunya virus infection by modulating actin remodeling pathway

Chikungunya virus (CHIKV) epidemics around the world have created public health concern with the unavailability of effective drugs and vaccines. This emphasizes the need for molecular understanding of host-virus interactions for developing effective targeted antivirals. Microarray analysis was carri...

Descripción completa

Detalles Bibliográficos
Autores principales: Mamidi, Prabhudutta, Nayak, Tapas Kumar, Kumar, Abhishek, Kumar, Sameer, Chatterjee, Sanchari, De, Saikat, Datey, Ankita, Ghosh, Soumyajit, Keshry, Supriya Suman, Singh, Sharad, Laha, Eshna, Ray, Amrita, Chattopadhyay, Subhasis, Chattopadhyay, Soma
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8592423/
https://www.ncbi.nlm.nih.gov/pubmed/34780576
http://dx.doi.org/10.1371/journal.ppat.1009667
_version_ 1784599451476688896
author Mamidi, Prabhudutta
Nayak, Tapas Kumar
Kumar, Abhishek
Kumar, Sameer
Chatterjee, Sanchari
De, Saikat
Datey, Ankita
Ghosh, Soumyajit
Keshry, Supriya Suman
Singh, Sharad
Laha, Eshna
Ray, Amrita
Chattopadhyay, Subhasis
Chattopadhyay, Soma
author_facet Mamidi, Prabhudutta
Nayak, Tapas Kumar
Kumar, Abhishek
Kumar, Sameer
Chatterjee, Sanchari
De, Saikat
Datey, Ankita
Ghosh, Soumyajit
Keshry, Supriya Suman
Singh, Sharad
Laha, Eshna
Ray, Amrita
Chattopadhyay, Subhasis
Chattopadhyay, Soma
author_sort Mamidi, Prabhudutta
collection PubMed
description Chikungunya virus (CHIKV) epidemics around the world have created public health concern with the unavailability of effective drugs and vaccines. This emphasizes the need for molecular understanding of host-virus interactions for developing effective targeted antivirals. Microarray analysis was carried out using CHIKV strain (Prototype and Indian) infected Vero cells and two host isozymes, MAPK activated protein kinase 2 (MK2) and MAPK activated protein kinase 3 (MK3) were selected for further analysis. The substrate spectrum of both enzymes is indistinguishable and covers proteins involved in cytokines production, endocytosis, reorganization of the cytoskeleton, cell migration, cell cycle control, chromatin remodeling and transcriptional regulation. Gene silencing and drug treatment were performed in vitro and in vivo to unravel the role of MK2/MK3 in CHIKV infection. Gene silencing of MK2 and MK3 abrogated around 58% CHIKV progeny release from the host cell and a MK2 activation inhibitor (CMPD1) treatment demonstrated 68% inhibition of viral infection suggesting a major role of MAPKAPKs during late CHIKV infection in vitro. Further, it was observed that the inhibition in viral infection is primarily due to the abrogation of lamellipodium formation through modulation of factors involved in the actin cytoskeleton remodeling pathway. Moreover, CHIKV-infected C57BL/6 mice demonstrated reduction in the viral copy number, lessened disease score and better survivability after CMPD1 treatment. In addition, reduction in expression of key pro-inflammatory mediators such as CXCL13, RAGE, FGF, MMP9 and increase in HGF (a CHIKV infection recovery marker) was observed indicating the effectiveness of the drug against CHIKV. Taken together it can be proposed that MK2 and MK3 are crucial host factors for CHIKV infection and can be considered as important target for developing effective anti-CHIKV strategies.
format Online
Article
Text
id pubmed-8592423
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-85924232021-11-16 MK2a inhibitor CMPD1 abrogates chikungunya virus infection by modulating actin remodeling pathway Mamidi, Prabhudutta Nayak, Tapas Kumar Kumar, Abhishek Kumar, Sameer Chatterjee, Sanchari De, Saikat Datey, Ankita Ghosh, Soumyajit Keshry, Supriya Suman Singh, Sharad Laha, Eshna Ray, Amrita Chattopadhyay, Subhasis Chattopadhyay, Soma PLoS Pathog Research Article Chikungunya virus (CHIKV) epidemics around the world have created public health concern with the unavailability of effective drugs and vaccines. This emphasizes the need for molecular understanding of host-virus interactions for developing effective targeted antivirals. Microarray analysis was carried out using CHIKV strain (Prototype and Indian) infected Vero cells and two host isozymes, MAPK activated protein kinase 2 (MK2) and MAPK activated protein kinase 3 (MK3) were selected for further analysis. The substrate spectrum of both enzymes is indistinguishable and covers proteins involved in cytokines production, endocytosis, reorganization of the cytoskeleton, cell migration, cell cycle control, chromatin remodeling and transcriptional regulation. Gene silencing and drug treatment were performed in vitro and in vivo to unravel the role of MK2/MK3 in CHIKV infection. Gene silencing of MK2 and MK3 abrogated around 58% CHIKV progeny release from the host cell and a MK2 activation inhibitor (CMPD1) treatment demonstrated 68% inhibition of viral infection suggesting a major role of MAPKAPKs during late CHIKV infection in vitro. Further, it was observed that the inhibition in viral infection is primarily due to the abrogation of lamellipodium formation through modulation of factors involved in the actin cytoskeleton remodeling pathway. Moreover, CHIKV-infected C57BL/6 mice demonstrated reduction in the viral copy number, lessened disease score and better survivability after CMPD1 treatment. In addition, reduction in expression of key pro-inflammatory mediators such as CXCL13, RAGE, FGF, MMP9 and increase in HGF (a CHIKV infection recovery marker) was observed indicating the effectiveness of the drug against CHIKV. Taken together it can be proposed that MK2 and MK3 are crucial host factors for CHIKV infection and can be considered as important target for developing effective anti-CHIKV strategies. Public Library of Science 2021-11-15 /pmc/articles/PMC8592423/ /pubmed/34780576 http://dx.doi.org/10.1371/journal.ppat.1009667 Text en © 2021 Mamidi et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Mamidi, Prabhudutta
Nayak, Tapas Kumar
Kumar, Abhishek
Kumar, Sameer
Chatterjee, Sanchari
De, Saikat
Datey, Ankita
Ghosh, Soumyajit
Keshry, Supriya Suman
Singh, Sharad
Laha, Eshna
Ray, Amrita
Chattopadhyay, Subhasis
Chattopadhyay, Soma
MK2a inhibitor CMPD1 abrogates chikungunya virus infection by modulating actin remodeling pathway
title MK2a inhibitor CMPD1 abrogates chikungunya virus infection by modulating actin remodeling pathway
title_full MK2a inhibitor CMPD1 abrogates chikungunya virus infection by modulating actin remodeling pathway
title_fullStr MK2a inhibitor CMPD1 abrogates chikungunya virus infection by modulating actin remodeling pathway
title_full_unstemmed MK2a inhibitor CMPD1 abrogates chikungunya virus infection by modulating actin remodeling pathway
title_short MK2a inhibitor CMPD1 abrogates chikungunya virus infection by modulating actin remodeling pathway
title_sort mk2a inhibitor cmpd1 abrogates chikungunya virus infection by modulating actin remodeling pathway
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8592423/
https://www.ncbi.nlm.nih.gov/pubmed/34780576
http://dx.doi.org/10.1371/journal.ppat.1009667
work_keys_str_mv AT mamidiprabhudutta mk2ainhibitorcmpd1abrogateschikungunyavirusinfectionbymodulatingactinremodelingpathway
AT nayaktapaskumar mk2ainhibitorcmpd1abrogateschikungunyavirusinfectionbymodulatingactinremodelingpathway
AT kumarabhishek mk2ainhibitorcmpd1abrogateschikungunyavirusinfectionbymodulatingactinremodelingpathway
AT kumarsameer mk2ainhibitorcmpd1abrogateschikungunyavirusinfectionbymodulatingactinremodelingpathway
AT chatterjeesanchari mk2ainhibitorcmpd1abrogateschikungunyavirusinfectionbymodulatingactinremodelingpathway
AT desaikat mk2ainhibitorcmpd1abrogateschikungunyavirusinfectionbymodulatingactinremodelingpathway
AT dateyankita mk2ainhibitorcmpd1abrogateschikungunyavirusinfectionbymodulatingactinremodelingpathway
AT ghoshsoumyajit mk2ainhibitorcmpd1abrogateschikungunyavirusinfectionbymodulatingactinremodelingpathway
AT keshrysupriyasuman mk2ainhibitorcmpd1abrogateschikungunyavirusinfectionbymodulatingactinremodelingpathway
AT singhsharad mk2ainhibitorcmpd1abrogateschikungunyavirusinfectionbymodulatingactinremodelingpathway
AT lahaeshna mk2ainhibitorcmpd1abrogateschikungunyavirusinfectionbymodulatingactinremodelingpathway
AT rayamrita mk2ainhibitorcmpd1abrogateschikungunyavirusinfectionbymodulatingactinremodelingpathway
AT chattopadhyaysubhasis mk2ainhibitorcmpd1abrogateschikungunyavirusinfectionbymodulatingactinremodelingpathway
AT chattopadhyaysoma mk2ainhibitorcmpd1abrogateschikungunyavirusinfectionbymodulatingactinremodelingpathway