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Dual targeting of glutaminase 1 and thymidylate synthase elicits death synergistically in NSCLC

Glutaminase 1 (GLS1) expression is increased in non-small cell lung cancer (NSCLC). GLS1 knockdown using siRNA or inhibition using bis-2-(5-phenylacetamido-1,3,4-thiadiazol-2-yl)ethyl sulfide (BPTES) induced cell cycle arrest with significant reduction of ATP level while levels of reactive oxygen sp...

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Autores principales: Lee, Jae-Seon, Kang, Joon H, Lee, Seon-Hyeong, Hong, Dongwan, Son, Jaekyoung, Hong, Kyeong M, Song, Jaewhan, Kim, Soo-Youl
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5261012/
https://www.ncbi.nlm.nih.gov/pubmed/27929535
http://dx.doi.org/10.1038/cddis.2016.404
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author Lee, Jae-Seon
Kang, Joon H
Lee, Seon-Hyeong
Hong, Dongwan
Son, Jaekyoung
Hong, Kyeong M
Song, Jaewhan
Kim, Soo-Youl
author_facet Lee, Jae-Seon
Kang, Joon H
Lee, Seon-Hyeong
Hong, Dongwan
Son, Jaekyoung
Hong, Kyeong M
Song, Jaewhan
Kim, Soo-Youl
author_sort Lee, Jae-Seon
collection PubMed
description Glutaminase 1 (GLS1) expression is increased in non-small cell lung cancer (NSCLC). GLS1 knockdown using siRNA or inhibition using bis-2-(5-phenylacetamido-1,3,4-thiadiazol-2-yl)ethyl sulfide (BPTES) induced cell cycle arrest with significant reduction of ATP level while levels of reactive oxygen species or glutathione were not affected in NSCLC cell lines. Recently we found that NSCLC significantly depends on cytosol NADH for ATP production. GLS1 remarkably contributes to ATP production through transferring cytosolic NADH into mitochondria via malate-aspartate shuttle by supply of glutamate in NSCLC. Regulation of malate-aspartate shuttle by knockdown or inhibition of glutamic-oxaloacetic transaminase 2 or malate dehydrogenase 2 mimicked GLS1 knockdown, which induced cell death with ATP reduction in NSCLC. Therefore, GLS1 inhibition induced cell cycle arrest with ATP depletion by glutamate reduction. Dual inhibition with BPTES and thymidylate synthase inhibitor, 5-fluorouracil (5-FU), elicits cell death synergistically through cell cycle arrest in NSCLC. A preclinical xenograft model of NSCLC showed remarkable anti-tumour effect synergistically in the BPTES and 5-FU dual therapy group.
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spelling pubmed-52610122017-01-26 Dual targeting of glutaminase 1 and thymidylate synthase elicits death synergistically in NSCLC Lee, Jae-Seon Kang, Joon H Lee, Seon-Hyeong Hong, Dongwan Son, Jaekyoung Hong, Kyeong M Song, Jaewhan Kim, Soo-Youl Cell Death Dis Original Article Glutaminase 1 (GLS1) expression is increased in non-small cell lung cancer (NSCLC). GLS1 knockdown using siRNA or inhibition using bis-2-(5-phenylacetamido-1,3,4-thiadiazol-2-yl)ethyl sulfide (BPTES) induced cell cycle arrest with significant reduction of ATP level while levels of reactive oxygen species or glutathione were not affected in NSCLC cell lines. Recently we found that NSCLC significantly depends on cytosol NADH for ATP production. GLS1 remarkably contributes to ATP production through transferring cytosolic NADH into mitochondria via malate-aspartate shuttle by supply of glutamate in NSCLC. Regulation of malate-aspartate shuttle by knockdown or inhibition of glutamic-oxaloacetic transaminase 2 or malate dehydrogenase 2 mimicked GLS1 knockdown, which induced cell death with ATP reduction in NSCLC. Therefore, GLS1 inhibition induced cell cycle arrest with ATP depletion by glutamate reduction. Dual inhibition with BPTES and thymidylate synthase inhibitor, 5-fluorouracil (5-FU), elicits cell death synergistically through cell cycle arrest in NSCLC. A preclinical xenograft model of NSCLC showed remarkable anti-tumour effect synergistically in the BPTES and 5-FU dual therapy group. Nature Publishing Group 2016-12 2016-12-08 /pmc/articles/PMC5261012/ /pubmed/27929535 http://dx.doi.org/10.1038/cddis.2016.404 Text en Copyright © 2016 The Author(s) http://creativecommons.org/licenses/by/4.0/ Cell Death and Disease is an open-access journal published by Nature Publishing Group. 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 Original Article
Lee, Jae-Seon
Kang, Joon H
Lee, Seon-Hyeong
Hong, Dongwan
Son, Jaekyoung
Hong, Kyeong M
Song, Jaewhan
Kim, Soo-Youl
Dual targeting of glutaminase 1 and thymidylate synthase elicits death synergistically in NSCLC
title Dual targeting of glutaminase 1 and thymidylate synthase elicits death synergistically in NSCLC
title_full Dual targeting of glutaminase 1 and thymidylate synthase elicits death synergistically in NSCLC
title_fullStr Dual targeting of glutaminase 1 and thymidylate synthase elicits death synergistically in NSCLC
title_full_unstemmed Dual targeting of glutaminase 1 and thymidylate synthase elicits death synergistically in NSCLC
title_short Dual targeting of glutaminase 1 and thymidylate synthase elicits death synergistically in NSCLC
title_sort dual targeting of glutaminase 1 and thymidylate synthase elicits death synergistically in nsclc
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5261012/
https://www.ncbi.nlm.nih.gov/pubmed/27929535
http://dx.doi.org/10.1038/cddis.2016.404
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