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HGF/c-Met/β1-integrin signalling axis induces tunneling nanotubes in A549 lung adenocarcinoma cells

Tunneling nanotubes (TNTs) are thin cytoplasmic extensions involved in long-distance intercellular communication and can transport intracellular organelles and signalling molecules. In cancer cells, TNT formation contributes to cell survival, chemoresistance, and malignancy. However, the molecular m...

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Autores principales: Awanis, Griselda, Banerjee, Salonee, Johnson, Robert, Raveenthiraraj, Sathuwarman, Elmeligy, Aya, Warren, Derek, Gavrilovic, Jelena, Sobolewski, Anastasia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Life Science Alliance LLC 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10427768/
https://www.ncbi.nlm.nih.gov/pubmed/37550007
http://dx.doi.org/10.26508/lsa.202301953
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author Awanis, Griselda
Banerjee, Salonee
Johnson, Robert
Raveenthiraraj, Sathuwarman
Elmeligy, Aya
Warren, Derek
Gavrilovic, Jelena
Sobolewski, Anastasia
author_facet Awanis, Griselda
Banerjee, Salonee
Johnson, Robert
Raveenthiraraj, Sathuwarman
Elmeligy, Aya
Warren, Derek
Gavrilovic, Jelena
Sobolewski, Anastasia
author_sort Awanis, Griselda
collection PubMed
description Tunneling nanotubes (TNTs) are thin cytoplasmic extensions involved in long-distance intercellular communication and can transport intracellular organelles and signalling molecules. In cancer cells, TNT formation contributes to cell survival, chemoresistance, and malignancy. However, the molecular mechanisms underlying TNT formation are not well defined, especially in different cancers. TNTs are present in non-small cell lung cancer (NSCLC) patients with adenocarcinoma. In NSCLC, hepatocyte growth factor (HGF) and its receptor, c-Met, are mutationally upregulated, causing increased cancer cell growth, survival, and invasion. This study identifies c-Met, β1-integrin, and paxillin as novel components of TNTs in A549 lung adenocarcinoma cells, with paxillin localised at the protrusion site of TNTs. The HGF-induced TNTs in our study demonstrate the ability to transport lipid vesicles and mitochondria. HGF-induced TNT formation is mediated by c-Met and β1-integrin in conjunction with paxillin, followed by downstream activation of MAPK and PI3K pathways and the Arp2/3 complex. These findings demonstrate a potential novel approach to inhibit TNT formation through targeting HGF/c-Met receptor and β1-integrin signalling interactions, which has implications for multi-drug targeting in NSCLC.
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spelling pubmed-104277682023-08-17 HGF/c-Met/β1-integrin signalling axis induces tunneling nanotubes in A549 lung adenocarcinoma cells Awanis, Griselda Banerjee, Salonee Johnson, Robert Raveenthiraraj, Sathuwarman Elmeligy, Aya Warren, Derek Gavrilovic, Jelena Sobolewski, Anastasia Life Sci Alliance Research Articles Tunneling nanotubes (TNTs) are thin cytoplasmic extensions involved in long-distance intercellular communication and can transport intracellular organelles and signalling molecules. In cancer cells, TNT formation contributes to cell survival, chemoresistance, and malignancy. However, the molecular mechanisms underlying TNT formation are not well defined, especially in different cancers. TNTs are present in non-small cell lung cancer (NSCLC) patients with adenocarcinoma. In NSCLC, hepatocyte growth factor (HGF) and its receptor, c-Met, are mutationally upregulated, causing increased cancer cell growth, survival, and invasion. This study identifies c-Met, β1-integrin, and paxillin as novel components of TNTs in A549 lung adenocarcinoma cells, with paxillin localised at the protrusion site of TNTs. The HGF-induced TNTs in our study demonstrate the ability to transport lipid vesicles and mitochondria. HGF-induced TNT formation is mediated by c-Met and β1-integrin in conjunction with paxillin, followed by downstream activation of MAPK and PI3K pathways and the Arp2/3 complex. These findings demonstrate a potential novel approach to inhibit TNT formation through targeting HGF/c-Met receptor and β1-integrin signalling interactions, which has implications for multi-drug targeting in NSCLC. Life Science Alliance LLC 2023-08-07 /pmc/articles/PMC10427768/ /pubmed/37550007 http://dx.doi.org/10.26508/lsa.202301953 Text en © 2023 Awanis et al. https://creativecommons.org/licenses/by/4.0/This article is available under a Creative Commons License (Attribution 4.0 International, as described at https://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Articles
Awanis, Griselda
Banerjee, Salonee
Johnson, Robert
Raveenthiraraj, Sathuwarman
Elmeligy, Aya
Warren, Derek
Gavrilovic, Jelena
Sobolewski, Anastasia
HGF/c-Met/β1-integrin signalling axis induces tunneling nanotubes in A549 lung adenocarcinoma cells
title HGF/c-Met/β1-integrin signalling axis induces tunneling nanotubes in A549 lung adenocarcinoma cells
title_full HGF/c-Met/β1-integrin signalling axis induces tunneling nanotubes in A549 lung adenocarcinoma cells
title_fullStr HGF/c-Met/β1-integrin signalling axis induces tunneling nanotubes in A549 lung adenocarcinoma cells
title_full_unstemmed HGF/c-Met/β1-integrin signalling axis induces tunneling nanotubes in A549 lung adenocarcinoma cells
title_short HGF/c-Met/β1-integrin signalling axis induces tunneling nanotubes in A549 lung adenocarcinoma cells
title_sort hgf/c-met/β1-integrin signalling axis induces tunneling nanotubes in a549 lung adenocarcinoma cells
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10427768/
https://www.ncbi.nlm.nih.gov/pubmed/37550007
http://dx.doi.org/10.26508/lsa.202301953
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