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TIMP-1 Dependent Modulation of Metabolic Profiles Impacts Chemoresistance in NSCLC

The development of chemoresistance remains a significant barrier to treating NSCLC. Alteration of cancer cell metabolism is an important mechanism for chemoresistance. This study explored the role of aberrant metabolism in TIMP-1-mediated chemoresistance. Bioinformatics analysis identified an associ...

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Autores principales: Xiao, Wei, Ahluwalia, Pankaj, Wang, Lan, Howard, John, Kolhe, Ravindra, Rojiani, Amyn M., Rojiani, Mumtaz V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9562647/
https://www.ncbi.nlm.nih.gov/pubmed/36230997
http://dx.doi.org/10.3390/cells11193036
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author Xiao, Wei
Ahluwalia, Pankaj
Wang, Lan
Howard, John
Kolhe, Ravindra
Rojiani, Amyn M.
Rojiani, Mumtaz V.
author_facet Xiao, Wei
Ahluwalia, Pankaj
Wang, Lan
Howard, John
Kolhe, Ravindra
Rojiani, Amyn M.
Rojiani, Mumtaz V.
author_sort Xiao, Wei
collection PubMed
description The development of chemoresistance remains a significant barrier to treating NSCLC. Alteration of cancer cell metabolism is an important mechanism for chemoresistance. This study explored the role of aberrant metabolism in TIMP-1-mediated chemoresistance. Bioinformatics analysis identified an association of high TIMP-1 with altered energy metabolism. We have defined the role of depolarized mitochondria through a reduction in lactate secretion, higher ROS levels in TIMP-1 KD cells and reduced GSH levels. TIMP-1 modulates the metabolic profile via acetylation of mitochondrial STAT3 and its interaction with CD44. Intriguingly, monomers of acetylated STAT3 were critical for altered metabolism, whereas STAT3 dimers abrogated this function. Further, the mitochondrial metabolic profile was also altered in a cisplatin-resistant clone of A549 cells. We also correlated the immunoexpression of CD44, STAT3 and TIMP-1 in patient samples. This study provided evidence that TIMP-1 alters the metabolic profile by modulating mitochondrial metabolism via the CD44-STAT3 axis through its effects on STAT3 acetylation. It also lent further support to the critical role of TIMP-1 in chemoresistance. Interrogation of the TCGA-LUAD dataset revealed perturbations in the critical modulator that can alter metabolic states in cancer cells. Higher expression of a five-gene signature, including TIMP-1, correlated with immunosuppressive cells and was found to be associated with overall survival. This study identified several metabolic mechanisms that could influence therapeutic options and prognosis in NSCLC patients.
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spelling pubmed-95626472022-10-15 TIMP-1 Dependent Modulation of Metabolic Profiles Impacts Chemoresistance in NSCLC Xiao, Wei Ahluwalia, Pankaj Wang, Lan Howard, John Kolhe, Ravindra Rojiani, Amyn M. Rojiani, Mumtaz V. Cells Article The development of chemoresistance remains a significant barrier to treating NSCLC. Alteration of cancer cell metabolism is an important mechanism for chemoresistance. This study explored the role of aberrant metabolism in TIMP-1-mediated chemoresistance. Bioinformatics analysis identified an association of high TIMP-1 with altered energy metabolism. We have defined the role of depolarized mitochondria through a reduction in lactate secretion, higher ROS levels in TIMP-1 KD cells and reduced GSH levels. TIMP-1 modulates the metabolic profile via acetylation of mitochondrial STAT3 and its interaction with CD44. Intriguingly, monomers of acetylated STAT3 were critical for altered metabolism, whereas STAT3 dimers abrogated this function. Further, the mitochondrial metabolic profile was also altered in a cisplatin-resistant clone of A549 cells. We also correlated the immunoexpression of CD44, STAT3 and TIMP-1 in patient samples. This study provided evidence that TIMP-1 alters the metabolic profile by modulating mitochondrial metabolism via the CD44-STAT3 axis through its effects on STAT3 acetylation. It also lent further support to the critical role of TIMP-1 in chemoresistance. Interrogation of the TCGA-LUAD dataset revealed perturbations in the critical modulator that can alter metabolic states in cancer cells. Higher expression of a five-gene signature, including TIMP-1, correlated with immunosuppressive cells and was found to be associated with overall survival. This study identified several metabolic mechanisms that could influence therapeutic options and prognosis in NSCLC patients. MDPI 2022-09-28 /pmc/articles/PMC9562647/ /pubmed/36230997 http://dx.doi.org/10.3390/cells11193036 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
Xiao, Wei
Ahluwalia, Pankaj
Wang, Lan
Howard, John
Kolhe, Ravindra
Rojiani, Amyn M.
Rojiani, Mumtaz V.
TIMP-1 Dependent Modulation of Metabolic Profiles Impacts Chemoresistance in NSCLC
title TIMP-1 Dependent Modulation of Metabolic Profiles Impacts Chemoresistance in NSCLC
title_full TIMP-1 Dependent Modulation of Metabolic Profiles Impacts Chemoresistance in NSCLC
title_fullStr TIMP-1 Dependent Modulation of Metabolic Profiles Impacts Chemoresistance in NSCLC
title_full_unstemmed TIMP-1 Dependent Modulation of Metabolic Profiles Impacts Chemoresistance in NSCLC
title_short TIMP-1 Dependent Modulation of Metabolic Profiles Impacts Chemoresistance in NSCLC
title_sort timp-1 dependent modulation of metabolic profiles impacts chemoresistance in nsclc
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9562647/
https://www.ncbi.nlm.nih.gov/pubmed/36230997
http://dx.doi.org/10.3390/cells11193036
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