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Survival of HT29 cancer cells is influenced by hepatocyte growth factor receptor inhibition through modulation of self-DNA-triggered TLR9-dependent autophagy response

HGFR activation drives the malignant progression of colorectal cancer, and its inhibition displays anti-autophagic activity. The interrelated role of HGFR inhibition and TLR9/autophagy signaling in HT29 cancer cells subjected to modified self-DNA treatments has not been clarified. We analyzed this c...

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Autores principales: Bohusné Barta, Bettina, Simon, Ágnes, Nagy, Lőrinc, Dankó, Titanilla, Raffay, Regina Eszter, Petővári, Gábor, Zsiros, Viktória, Sebestyén, Anna, Sipos, Ferenc, Műzes, Györgyi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9098092/
https://www.ncbi.nlm.nih.gov/pubmed/35551547
http://dx.doi.org/10.1371/journal.pone.0268217
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author Bohusné Barta, Bettina
Simon, Ágnes
Nagy, Lőrinc
Dankó, Titanilla
Raffay, Regina Eszter
Petővári, Gábor
Zsiros, Viktória
Sebestyén, Anna
Sipos, Ferenc
Műzes, Györgyi
author_facet Bohusné Barta, Bettina
Simon, Ágnes
Nagy, Lőrinc
Dankó, Titanilla
Raffay, Regina Eszter
Petővári, Gábor
Zsiros, Viktória
Sebestyén, Anna
Sipos, Ferenc
Műzes, Györgyi
author_sort Bohusné Barta, Bettina
collection PubMed
description HGFR activation drives the malignant progression of colorectal cancer, and its inhibition displays anti-autophagic activity. The interrelated role of HGFR inhibition and TLR9/autophagy signaling in HT29 cancer cells subjected to modified self-DNA treatments has not been clarified. We analyzed this complex interplay with cell metabolism and proliferation measurements, TLR9, HGFR and autophagy inhibitory assays and WES Simple Western blot-based autophagy flux measurements, gene expression analyses, immunocytochemistry, and transmission electron microscopy. The overexpression of MyD88 and caspase-3 was associated with enhanced HT29 cell proliferation, suggesting that incubation with self-DNAs could suppress the apoptosis-induced compensatory cell proliferation. HGFR inhibition blocked the proliferation-reducing effect of genomic and hypermethylated, but not that of fragmented DNA. Lowest cell proliferation was achieved with the concomitant use of genomic DNA, HGFR inhibitor, and chloroquine, when the proliferation stimulating effect of STAT3 overexpression could be outweighed by the inhibitory effect of LC3B, indicating the putative involvement of HGFR-mTOR-ULK1 molecular cascade in HGFR inhibitor-mediated autophagy. The most intense cell proliferation was caused by the co-administration of hypermethylated DNA, TLR9 and HGFR inhibitors, when decreased expression of both canonical and non-canonical HGFR signaling pathways and autophagy-related genes was present. The observed ultrastructural changes also support the context-dependent role of HGFR inhibition and autophagy on cell survival and proliferation. Further investigation of the influence of the studied signaling pathways and cellular processes can provide a basis for novel, individualized anti-cancer therapies.
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spelling pubmed-90980922022-05-13 Survival of HT29 cancer cells is influenced by hepatocyte growth factor receptor inhibition through modulation of self-DNA-triggered TLR9-dependent autophagy response Bohusné Barta, Bettina Simon, Ágnes Nagy, Lőrinc Dankó, Titanilla Raffay, Regina Eszter Petővári, Gábor Zsiros, Viktória Sebestyén, Anna Sipos, Ferenc Műzes, Györgyi PLoS One Research Article HGFR activation drives the malignant progression of colorectal cancer, and its inhibition displays anti-autophagic activity. The interrelated role of HGFR inhibition and TLR9/autophagy signaling in HT29 cancer cells subjected to modified self-DNA treatments has not been clarified. We analyzed this complex interplay with cell metabolism and proliferation measurements, TLR9, HGFR and autophagy inhibitory assays and WES Simple Western blot-based autophagy flux measurements, gene expression analyses, immunocytochemistry, and transmission electron microscopy. The overexpression of MyD88 and caspase-3 was associated with enhanced HT29 cell proliferation, suggesting that incubation with self-DNAs could suppress the apoptosis-induced compensatory cell proliferation. HGFR inhibition blocked the proliferation-reducing effect of genomic and hypermethylated, but not that of fragmented DNA. Lowest cell proliferation was achieved with the concomitant use of genomic DNA, HGFR inhibitor, and chloroquine, when the proliferation stimulating effect of STAT3 overexpression could be outweighed by the inhibitory effect of LC3B, indicating the putative involvement of HGFR-mTOR-ULK1 molecular cascade in HGFR inhibitor-mediated autophagy. The most intense cell proliferation was caused by the co-administration of hypermethylated DNA, TLR9 and HGFR inhibitors, when decreased expression of both canonical and non-canonical HGFR signaling pathways and autophagy-related genes was present. The observed ultrastructural changes also support the context-dependent role of HGFR inhibition and autophagy on cell survival and proliferation. Further investigation of the influence of the studied signaling pathways and cellular processes can provide a basis for novel, individualized anti-cancer therapies. Public Library of Science 2022-05-12 /pmc/articles/PMC9098092/ /pubmed/35551547 http://dx.doi.org/10.1371/journal.pone.0268217 Text en © 2022 Bohusné Barta et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Bohusné Barta, Bettina
Simon, Ágnes
Nagy, Lőrinc
Dankó, Titanilla
Raffay, Regina Eszter
Petővári, Gábor
Zsiros, Viktória
Sebestyén, Anna
Sipos, Ferenc
Műzes, Györgyi
Survival of HT29 cancer cells is influenced by hepatocyte growth factor receptor inhibition through modulation of self-DNA-triggered TLR9-dependent autophagy response
title Survival of HT29 cancer cells is influenced by hepatocyte growth factor receptor inhibition through modulation of self-DNA-triggered TLR9-dependent autophagy response
title_full Survival of HT29 cancer cells is influenced by hepatocyte growth factor receptor inhibition through modulation of self-DNA-triggered TLR9-dependent autophagy response
title_fullStr Survival of HT29 cancer cells is influenced by hepatocyte growth factor receptor inhibition through modulation of self-DNA-triggered TLR9-dependent autophagy response
title_full_unstemmed Survival of HT29 cancer cells is influenced by hepatocyte growth factor receptor inhibition through modulation of self-DNA-triggered TLR9-dependent autophagy response
title_short Survival of HT29 cancer cells is influenced by hepatocyte growth factor receptor inhibition through modulation of self-DNA-triggered TLR9-dependent autophagy response
title_sort survival of ht29 cancer cells is influenced by hepatocyte growth factor receptor inhibition through modulation of self-dna-triggered tlr9-dependent autophagy response
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9098092/
https://www.ncbi.nlm.nih.gov/pubmed/35551547
http://dx.doi.org/10.1371/journal.pone.0268217
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