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Inhibition of ERK1/2 or AKT Activity Equally Enhances Radiation Sensitization in B16F10 Cells

BACKGROUND: The aim of the study was to evaluate the radiation sensitizing ability of ERK1/2, PI3K-AKT and JNK inhibitors in highly radiation resistant and metastatic B16F10 cells which carry wild-type Ras and Braf. METHODS: Mouse melanoma cell line B16F10 was exposed to 1.0, 2.0 and 3.0 Gy of elect...

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Autores principales: Kalal, Bhuvanesh Sukhlal, Fathima, Faraz, Pai, Vinitha Ramanath, Sanjeev, Ganesh, Krishna, Chilakapati Murali, Upadhya, Dinesh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elmer Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5862079/
https://www.ncbi.nlm.nih.gov/pubmed/29581812
http://dx.doi.org/10.14740/wjon1088w
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author Kalal, Bhuvanesh Sukhlal
Fathima, Faraz
Pai, Vinitha Ramanath
Sanjeev, Ganesh
Krishna, Chilakapati Murali
Upadhya, Dinesh
author_facet Kalal, Bhuvanesh Sukhlal
Fathima, Faraz
Pai, Vinitha Ramanath
Sanjeev, Ganesh
Krishna, Chilakapati Murali
Upadhya, Dinesh
author_sort Kalal, Bhuvanesh Sukhlal
collection PubMed
description BACKGROUND: The aim of the study was to evaluate the radiation sensitizing ability of ERK1/2, PI3K-AKT and JNK inhibitors in highly radiation resistant and metastatic B16F10 cells which carry wild-type Ras and Braf. METHODS: Mouse melanoma cell line B16F10 was exposed to 1.0, 2.0 and 3.0 Gy of electron beam radiation. Phosphorylated ERK1/2, AKT and JNK levels were estimated by ELISA. Cells were exposed to 2.0 and 3.0 Gy of radiation with or without prior pharmacological inhibition of ERK1/2, AKT as well as JNK pathways. Cell death induced by radiation as well as upon inhibition of these pathways was measured by TUNEL assay using flow cytometry. RESULTS: Exposure of B16F10 cells to 1.0, 2.0 and 3.0 Gy of electron beam irradiation triggered an increase in all the three phosphorylated proteins compared to sham-treated and control groups. B16F10 cells pre-treated with either ERK1/2 or AKT inhibitors equally enhanced radiation-induced cell death at 2.0 as well as 3.0 Gy (P < 0.001), while inhibition of JNK pathway increased radiation-induced cell death to a lesser extent. Interestingly combined inhibition of ERK1/2 or AKT pathways did not show additional cell death compared to individual ERK1/2 or AKT inhibition. This indicates that ERK1/2 or AKT mediates radiation resistance through common downstream molecules in B16F10 cells. CONCLUSIONS: Even without activating mutations in Ras or Braf genes, ERK1/2 and AKT play a critical role in B16F10 cell survival upon radiation exposure and possibly act through common downstream effector/s.
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spelling pubmed-58620792018-03-26 Inhibition of ERK1/2 or AKT Activity Equally Enhances Radiation Sensitization in B16F10 Cells Kalal, Bhuvanesh Sukhlal Fathima, Faraz Pai, Vinitha Ramanath Sanjeev, Ganesh Krishna, Chilakapati Murali Upadhya, Dinesh World J Oncol Original Article BACKGROUND: The aim of the study was to evaluate the radiation sensitizing ability of ERK1/2, PI3K-AKT and JNK inhibitors in highly radiation resistant and metastatic B16F10 cells which carry wild-type Ras and Braf. METHODS: Mouse melanoma cell line B16F10 was exposed to 1.0, 2.0 and 3.0 Gy of electron beam radiation. Phosphorylated ERK1/2, AKT and JNK levels were estimated by ELISA. Cells were exposed to 2.0 and 3.0 Gy of radiation with or without prior pharmacological inhibition of ERK1/2, AKT as well as JNK pathways. Cell death induced by radiation as well as upon inhibition of these pathways was measured by TUNEL assay using flow cytometry. RESULTS: Exposure of B16F10 cells to 1.0, 2.0 and 3.0 Gy of electron beam irradiation triggered an increase in all the three phosphorylated proteins compared to sham-treated and control groups. B16F10 cells pre-treated with either ERK1/2 or AKT inhibitors equally enhanced radiation-induced cell death at 2.0 as well as 3.0 Gy (P < 0.001), while inhibition of JNK pathway increased radiation-induced cell death to a lesser extent. Interestingly combined inhibition of ERK1/2 or AKT pathways did not show additional cell death compared to individual ERK1/2 or AKT inhibition. This indicates that ERK1/2 or AKT mediates radiation resistance through common downstream molecules in B16F10 cells. CONCLUSIONS: Even without activating mutations in Ras or Braf genes, ERK1/2 and AKT play a critical role in B16F10 cell survival upon radiation exposure and possibly act through common downstream effector/s. Elmer Press 2018-02 2018-03-08 /pmc/articles/PMC5862079/ /pubmed/29581812 http://dx.doi.org/10.14740/wjon1088w Text en Copyright 2018, Kalal et al. http://creativecommons.org/licenses/by-nc/4.0/ This article is distributed under the terms of the Creative Commons Attribution Non-Commercial 4.0 International License, which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Kalal, Bhuvanesh Sukhlal
Fathima, Faraz
Pai, Vinitha Ramanath
Sanjeev, Ganesh
Krishna, Chilakapati Murali
Upadhya, Dinesh
Inhibition of ERK1/2 or AKT Activity Equally Enhances Radiation Sensitization in B16F10 Cells
title Inhibition of ERK1/2 or AKT Activity Equally Enhances Radiation Sensitization in B16F10 Cells
title_full Inhibition of ERK1/2 or AKT Activity Equally Enhances Radiation Sensitization in B16F10 Cells
title_fullStr Inhibition of ERK1/2 or AKT Activity Equally Enhances Radiation Sensitization in B16F10 Cells
title_full_unstemmed Inhibition of ERK1/2 or AKT Activity Equally Enhances Radiation Sensitization in B16F10 Cells
title_short Inhibition of ERK1/2 or AKT Activity Equally Enhances Radiation Sensitization in B16F10 Cells
title_sort inhibition of erk1/2 or akt activity equally enhances radiation sensitization in b16f10 cells
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5862079/
https://www.ncbi.nlm.nih.gov/pubmed/29581812
http://dx.doi.org/10.14740/wjon1088w
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