Cargando…

MYH9 Facilitates Cell Invasion and Radioresistance in Head and Neck Cancer via Modulation of Cellular ROS Levels by Activating the MAPK-Nrf2-GCLC Pathway

The MYH9 (Myosin heavy chain 9), an architecture component of the actomyosin cytoskeleton, has been reported to be dysregulated in several types of cancers. However, how this molecule contributes to cancer development is still obscure. This study deciphered the molecular function of MYH9 in head and...

Descripción completa

Detalles Bibliográficos
Autores principales: You, Guo-Rung, Chang, Joseph T., Li, Yan-Liang, Huang, Chi-Wei, Tsai, Yu-Liang, Fan, Kang-Hsing, Kang, Chung-Jan, Huang, Shiang-Fu, Chang, Po-Hung, Cheng, Ann-Joy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9497050/
https://www.ncbi.nlm.nih.gov/pubmed/36139430
http://dx.doi.org/10.3390/cells11182855
_version_ 1784794418128093184
author You, Guo-Rung
Chang, Joseph T.
Li, Yan-Liang
Huang, Chi-Wei
Tsai, Yu-Liang
Fan, Kang-Hsing
Kang, Chung-Jan
Huang, Shiang-Fu
Chang, Po-Hung
Cheng, Ann-Joy
author_facet You, Guo-Rung
Chang, Joseph T.
Li, Yan-Liang
Huang, Chi-Wei
Tsai, Yu-Liang
Fan, Kang-Hsing
Kang, Chung-Jan
Huang, Shiang-Fu
Chang, Po-Hung
Cheng, Ann-Joy
author_sort You, Guo-Rung
collection PubMed
description The MYH9 (Myosin heavy chain 9), an architecture component of the actomyosin cytoskeleton, has been reported to be dysregulated in several types of cancers. However, how this molecule contributes to cancer development is still obscure. This study deciphered the molecular function of MYH9 in head and neck cancer (HNC). Cellular methods included clonogenic survival, wound-healing migration, and Matrigel invasion assays. Molecular techniques included RT-qPCR, western blot, luciferase reporter assays, and flow cytometry. Clinical association studies were undertaken by TCGA data mining, Spearman correlation, and Kaplan-Meier survival analysis. We found that MYH9 was overexpressed in tumors and associated with poor prognosis in HNC patients. MYH9 promoted cell motility along with the modulation of the extracellular matrix (fibronectin, ITGA6, fascin, vimentin, MMPs). Also, MYH9 contributed to radioresistance and was related to the expression of anti-apoptotic and DNA repairing molecules (XIAP, MCL1, BCL2L1, ATM, RAD50, and NBN). Mechanically, MYH9 suppressed cellular ROS levels, which were achieved by activating the pan-MAPK signaling molecules (Erk, p38, and JNK), the induction of Nrf2 transcriptional activity, and the up-regulation of antioxidant enzymes (GCLC, GCLM, GPX2). The antioxidant enzyme GCLC was further demonstrated to facilitate cell invasion and radioresistance in HNC cells. Thus, MYH9 exerts malignant functions in HNC by regulating cellular ROS levels via activating the MAPK-Nrf2-GCLC signaling pathway. As MYH9 contributes to radioresistance and metastasis, this molecule may serve as a prognostic biomarker for clinical application. Furthermore, an in vivo study is emergent to support the therapeutic potential of targeting MYH9 to better manage refractory cancers.
format Online
Article
Text
id pubmed-9497050
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-94970502022-09-23 MYH9 Facilitates Cell Invasion and Radioresistance in Head and Neck Cancer via Modulation of Cellular ROS Levels by Activating the MAPK-Nrf2-GCLC Pathway You, Guo-Rung Chang, Joseph T. Li, Yan-Liang Huang, Chi-Wei Tsai, Yu-Liang Fan, Kang-Hsing Kang, Chung-Jan Huang, Shiang-Fu Chang, Po-Hung Cheng, Ann-Joy Cells Article The MYH9 (Myosin heavy chain 9), an architecture component of the actomyosin cytoskeleton, has been reported to be dysregulated in several types of cancers. However, how this molecule contributes to cancer development is still obscure. This study deciphered the molecular function of MYH9 in head and neck cancer (HNC). Cellular methods included clonogenic survival, wound-healing migration, and Matrigel invasion assays. Molecular techniques included RT-qPCR, western blot, luciferase reporter assays, and flow cytometry. Clinical association studies were undertaken by TCGA data mining, Spearman correlation, and Kaplan-Meier survival analysis. We found that MYH9 was overexpressed in tumors and associated with poor prognosis in HNC patients. MYH9 promoted cell motility along with the modulation of the extracellular matrix (fibronectin, ITGA6, fascin, vimentin, MMPs). Also, MYH9 contributed to radioresistance and was related to the expression of anti-apoptotic and DNA repairing molecules (XIAP, MCL1, BCL2L1, ATM, RAD50, and NBN). Mechanically, MYH9 suppressed cellular ROS levels, which were achieved by activating the pan-MAPK signaling molecules (Erk, p38, and JNK), the induction of Nrf2 transcriptional activity, and the up-regulation of antioxidant enzymes (GCLC, GCLM, GPX2). The antioxidant enzyme GCLC was further demonstrated to facilitate cell invasion and radioresistance in HNC cells. Thus, MYH9 exerts malignant functions in HNC by regulating cellular ROS levels via activating the MAPK-Nrf2-GCLC signaling pathway. As MYH9 contributes to radioresistance and metastasis, this molecule may serve as a prognostic biomarker for clinical application. Furthermore, an in vivo study is emergent to support the therapeutic potential of targeting MYH9 to better manage refractory cancers. MDPI 2022-09-13 /pmc/articles/PMC9497050/ /pubmed/36139430 http://dx.doi.org/10.3390/cells11182855 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
You, Guo-Rung
Chang, Joseph T.
Li, Yan-Liang
Huang, Chi-Wei
Tsai, Yu-Liang
Fan, Kang-Hsing
Kang, Chung-Jan
Huang, Shiang-Fu
Chang, Po-Hung
Cheng, Ann-Joy
MYH9 Facilitates Cell Invasion and Radioresistance in Head and Neck Cancer via Modulation of Cellular ROS Levels by Activating the MAPK-Nrf2-GCLC Pathway
title MYH9 Facilitates Cell Invasion and Radioresistance in Head and Neck Cancer via Modulation of Cellular ROS Levels by Activating the MAPK-Nrf2-GCLC Pathway
title_full MYH9 Facilitates Cell Invasion and Radioresistance in Head and Neck Cancer via Modulation of Cellular ROS Levels by Activating the MAPK-Nrf2-GCLC Pathway
title_fullStr MYH9 Facilitates Cell Invasion and Radioresistance in Head and Neck Cancer via Modulation of Cellular ROS Levels by Activating the MAPK-Nrf2-GCLC Pathway
title_full_unstemmed MYH9 Facilitates Cell Invasion and Radioresistance in Head and Neck Cancer via Modulation of Cellular ROS Levels by Activating the MAPK-Nrf2-GCLC Pathway
title_short MYH9 Facilitates Cell Invasion and Radioresistance in Head and Neck Cancer via Modulation of Cellular ROS Levels by Activating the MAPK-Nrf2-GCLC Pathway
title_sort myh9 facilitates cell invasion and radioresistance in head and neck cancer via modulation of cellular ros levels by activating the mapk-nrf2-gclc pathway
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9497050/
https://www.ncbi.nlm.nih.gov/pubmed/36139430
http://dx.doi.org/10.3390/cells11182855
work_keys_str_mv AT youguorung myh9facilitatescellinvasionandradioresistanceinheadandneckcancerviamodulationofcellularroslevelsbyactivatingthemapknrf2gclcpathway
AT changjosepht myh9facilitatescellinvasionandradioresistanceinheadandneckcancerviamodulationofcellularroslevelsbyactivatingthemapknrf2gclcpathway
AT liyanliang myh9facilitatescellinvasionandradioresistanceinheadandneckcancerviamodulationofcellularroslevelsbyactivatingthemapknrf2gclcpathway
AT huangchiwei myh9facilitatescellinvasionandradioresistanceinheadandneckcancerviamodulationofcellularroslevelsbyactivatingthemapknrf2gclcpathway
AT tsaiyuliang myh9facilitatescellinvasionandradioresistanceinheadandneckcancerviamodulationofcellularroslevelsbyactivatingthemapknrf2gclcpathway
AT fankanghsing myh9facilitatescellinvasionandradioresistanceinheadandneckcancerviamodulationofcellularroslevelsbyactivatingthemapknrf2gclcpathway
AT kangchungjan myh9facilitatescellinvasionandradioresistanceinheadandneckcancerviamodulationofcellularroslevelsbyactivatingthemapknrf2gclcpathway
AT huangshiangfu myh9facilitatescellinvasionandradioresistanceinheadandneckcancerviamodulationofcellularroslevelsbyactivatingthemapknrf2gclcpathway
AT changpohung myh9facilitatescellinvasionandradioresistanceinheadandneckcancerviamodulationofcellularroslevelsbyactivatingthemapknrf2gclcpathway
AT chengannjoy myh9facilitatescellinvasionandradioresistanceinheadandneckcancerviamodulationofcellularroslevelsbyactivatingthemapknrf2gclcpathway