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Echovirus 30 Induced Neuronal Cell Death through TRIO-RhoA Signaling Activation

BACKGROUND: Echovirus 30 (Echo30) is one of the most frequently identified human enteroviruses (EVs) causing aseptic meningitis and encephalitis. However the mechanism underlying the pathogenesis of Echo30 infection with significant clinical outcomes is not completely understood. The aim of this inv...

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Autores principales: Lee, June-Woo, Yeo, Sang-Gu, Kang, Byung-Hak, Lee, Hoe-Kyu, Kim, Jin-Won, Lee, Sun-Hwa, Kim, Ki-Sang, Cheon, Doo-Sung
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3346726/
https://www.ncbi.nlm.nih.gov/pubmed/22586486
http://dx.doi.org/10.1371/journal.pone.0036656
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author Lee, June-Woo
Yeo, Sang-Gu
Kang, Byung-Hak
Lee, Hoe-Kyu
Kim, Jin-Won
Lee, Sun-Hwa
Kim, Ki-Sang
Cheon, Doo-Sung
author_facet Lee, June-Woo
Yeo, Sang-Gu
Kang, Byung-Hak
Lee, Hoe-Kyu
Kim, Jin-Won
Lee, Sun-Hwa
Kim, Ki-Sang
Cheon, Doo-Sung
author_sort Lee, June-Woo
collection PubMed
description BACKGROUND: Echovirus 30 (Echo30) is one of the most frequently identified human enteroviruses (EVs) causing aseptic meningitis and encephalitis. However the mechanism underlying the pathogenesis of Echo30 infection with significant clinical outcomes is not completely understood. The aim of this investigation is to illustrate molecular pathologic alteration in neuronal cells induced by Echo30 infection using clinical isolate from young patient with neurologic involvement. METHODOLOGY/PRINCIPAL FINDINGS: To characterize the neuronal cellular response to Echo30 infection, we performed a proteomic analysis based on two-dimensional gel electrophoresis (2-DE) and MALDI-TOF/TOF Mass Spectrophotometric (MS) analysis. We identified significant alteration of several protein expression levels in Echo30-infected SK-N-SH cells. Among these proteins, we focused on an outstanding up-regulation of Triple functional domain (TRIO) in Echo30-infected SK-N-SH cells. Generally, TRIO acts as a key component in the regulation of axon guidance and cell migration. In this study, we determined that TRIO plays a role in the novel pathways in Echo30 induced neuronal cell death. CONCLUSIONS/SIGNIFICANCE: Our finding shows that TRIO plays a critical role in neuronal cell death by Echo30 infection. Echo30 infection activates TRIO-guanine nucleotide exchange factor (GEF) domains (GEFD2) and RhoA signaling in turn. These results suggest that Echo30 infection induced neuronal cell death by activation of the TRIO-RhoA signaling. We expect the regulation of TRIO-RhoA signaling may represent a new therapeutic approach in treating aseptic meningitis and encephalitis induced by Echo30.
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spelling pubmed-33467262012-05-14 Echovirus 30 Induced Neuronal Cell Death through TRIO-RhoA Signaling Activation Lee, June-Woo Yeo, Sang-Gu Kang, Byung-Hak Lee, Hoe-Kyu Kim, Jin-Won Lee, Sun-Hwa Kim, Ki-Sang Cheon, Doo-Sung PLoS One Research Article BACKGROUND: Echovirus 30 (Echo30) is one of the most frequently identified human enteroviruses (EVs) causing aseptic meningitis and encephalitis. However the mechanism underlying the pathogenesis of Echo30 infection with significant clinical outcomes is not completely understood. The aim of this investigation is to illustrate molecular pathologic alteration in neuronal cells induced by Echo30 infection using clinical isolate from young patient with neurologic involvement. METHODOLOGY/PRINCIPAL FINDINGS: To characterize the neuronal cellular response to Echo30 infection, we performed a proteomic analysis based on two-dimensional gel electrophoresis (2-DE) and MALDI-TOF/TOF Mass Spectrophotometric (MS) analysis. We identified significant alteration of several protein expression levels in Echo30-infected SK-N-SH cells. Among these proteins, we focused on an outstanding up-regulation of Triple functional domain (TRIO) in Echo30-infected SK-N-SH cells. Generally, TRIO acts as a key component in the regulation of axon guidance and cell migration. In this study, we determined that TRIO plays a role in the novel pathways in Echo30 induced neuronal cell death. CONCLUSIONS/SIGNIFICANCE: Our finding shows that TRIO plays a critical role in neuronal cell death by Echo30 infection. Echo30 infection activates TRIO-guanine nucleotide exchange factor (GEF) domains (GEFD2) and RhoA signaling in turn. These results suggest that Echo30 infection induced neuronal cell death by activation of the TRIO-RhoA signaling. We expect the regulation of TRIO-RhoA signaling may represent a new therapeutic approach in treating aseptic meningitis and encephalitis induced by Echo30. Public Library of Science 2012-05-07 /pmc/articles/PMC3346726/ /pubmed/22586486 http://dx.doi.org/10.1371/journal.pone.0036656 Text en Lee et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Lee, June-Woo
Yeo, Sang-Gu
Kang, Byung-Hak
Lee, Hoe-Kyu
Kim, Jin-Won
Lee, Sun-Hwa
Kim, Ki-Sang
Cheon, Doo-Sung
Echovirus 30 Induced Neuronal Cell Death through TRIO-RhoA Signaling Activation
title Echovirus 30 Induced Neuronal Cell Death through TRIO-RhoA Signaling Activation
title_full Echovirus 30 Induced Neuronal Cell Death through TRIO-RhoA Signaling Activation
title_fullStr Echovirus 30 Induced Neuronal Cell Death through TRIO-RhoA Signaling Activation
title_full_unstemmed Echovirus 30 Induced Neuronal Cell Death through TRIO-RhoA Signaling Activation
title_short Echovirus 30 Induced Neuronal Cell Death through TRIO-RhoA Signaling Activation
title_sort echovirus 30 induced neuronal cell death through trio-rhoa signaling activation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3346726/
https://www.ncbi.nlm.nih.gov/pubmed/22586486
http://dx.doi.org/10.1371/journal.pone.0036656
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