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Analysis of Primary Cilium Expression and Hedgehog Pathway Activation in Mesothelioma Throws Back Its Complex Biology

SIMPLE SUMMARY: Primary cilium (PC) is a solitary organelle protruding from the cellular membrane of almost all mammalian cells. It transduces signals from external to intracellular compartments regulating many physiological pathways. Dysfunction in PC can lead to a number of pathologic conditions i...

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Autores principales: Barbarino, Marcella, Bottaro, Maria, Spagnoletti, Laura, de Santi, Maria Margherita, Guazzo, Raffaella, Defraia, Chiara, Custoza, Cosimo, Serio, Gabriella, Iannelli, Francesco, Pesetti, Matilde, Aiello, Raffaele, Rosati, Diletta, Zanfrini, Edoardo, Luzzi, Luca, Bellan, Cristiana, Giordano, Antonio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9654223/
https://www.ncbi.nlm.nih.gov/pubmed/36358635
http://dx.doi.org/10.3390/cancers14215216
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author Barbarino, Marcella
Bottaro, Maria
Spagnoletti, Laura
de Santi, Maria Margherita
Guazzo, Raffaella
Defraia, Chiara
Custoza, Cosimo
Serio, Gabriella
Iannelli, Francesco
Pesetti, Matilde
Aiello, Raffaele
Rosati, Diletta
Zanfrini, Edoardo
Luzzi, Luca
Bellan, Cristiana
Giordano, Antonio
author_facet Barbarino, Marcella
Bottaro, Maria
Spagnoletti, Laura
de Santi, Maria Margherita
Guazzo, Raffaella
Defraia, Chiara
Custoza, Cosimo
Serio, Gabriella
Iannelli, Francesco
Pesetti, Matilde
Aiello, Raffaele
Rosati, Diletta
Zanfrini, Edoardo
Luzzi, Luca
Bellan, Cristiana
Giordano, Antonio
author_sort Barbarino, Marcella
collection PubMed
description SIMPLE SUMMARY: Primary cilium (PC) is a solitary organelle protruding from the cellular membrane of almost all mammalian cells. It transduces signals from external to intracellular compartments regulating many physiological pathways. Dysfunction in PC can lead to a number of pathologic conditions including cancer. Among the pathways transduced by PC, the Hedgehog (Hh) signaling is the focus of recent clinical studies. Malignant pleural mesothelioma (MPM) is a cancer of the membranes covering the lungs with poor prognosis and limited therapeutic options. Although Hh is known to be over-activated in MPM, it responds poorly to smoothened (SMO)/Hh inhibitors. We investigated for the first time the status of PC in MPM tissues, demonstrating intra- and inter-heterogeneity in its expression. We also correlated the presence of PC with activation of the Hh pathway, providing uncovered evidence of the co-existence of a PC-independent regulation of the Hh signaling in MPM. ABSTRACT: The primary cilium (PC) is a sensory organelle present on the cell surface, modulating the activity of many pathways. Dysfunctions in the PC lead to different pathologic conditions including cancer. Hedgehog signaling (Hh) is regulated by PC and the loss of its control has been observed in many cancers, including mesothelioma. Malignant pleural mesothelioma (MPM) is a fatal cancer of the pleural membranes with poor therapeutic options. Recently, overexpression of the Hh transcriptional activator GL1 has been demonstrated to be associated with poor overall survival (OS) in MPM. However, unlike other cancers, the response to G-protein-coupled receptor smoothened (SMO)/Hh inhibitors is poor, mainly attributable to the lack of markers for patient stratification. For all these reasons, and in particular for the role of PC in the regulation of Hh, we investigated for the first time the status of PC in MPM tissues, demonstrating intra- and inter-heterogeneity in its expression. We also correlated the presence of PC with the activation of the Hh pathway, providing uncovered evidence of a PC-independent regulation of the Hh signaling in MPM. Our study contributes to the understanding MPM heterogeneity, thus helping to identify patients who might benefit from Hh inhibitors.
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spelling pubmed-96542232022-11-15 Analysis of Primary Cilium Expression and Hedgehog Pathway Activation in Mesothelioma Throws Back Its Complex Biology Barbarino, Marcella Bottaro, Maria Spagnoletti, Laura de Santi, Maria Margherita Guazzo, Raffaella Defraia, Chiara Custoza, Cosimo Serio, Gabriella Iannelli, Francesco Pesetti, Matilde Aiello, Raffaele Rosati, Diletta Zanfrini, Edoardo Luzzi, Luca Bellan, Cristiana Giordano, Antonio Cancers (Basel) Article SIMPLE SUMMARY: Primary cilium (PC) is a solitary organelle protruding from the cellular membrane of almost all mammalian cells. It transduces signals from external to intracellular compartments regulating many physiological pathways. Dysfunction in PC can lead to a number of pathologic conditions including cancer. Among the pathways transduced by PC, the Hedgehog (Hh) signaling is the focus of recent clinical studies. Malignant pleural mesothelioma (MPM) is a cancer of the membranes covering the lungs with poor prognosis and limited therapeutic options. Although Hh is known to be over-activated in MPM, it responds poorly to smoothened (SMO)/Hh inhibitors. We investigated for the first time the status of PC in MPM tissues, demonstrating intra- and inter-heterogeneity in its expression. We also correlated the presence of PC with activation of the Hh pathway, providing uncovered evidence of the co-existence of a PC-independent regulation of the Hh signaling in MPM. ABSTRACT: The primary cilium (PC) is a sensory organelle present on the cell surface, modulating the activity of many pathways. Dysfunctions in the PC lead to different pathologic conditions including cancer. Hedgehog signaling (Hh) is regulated by PC and the loss of its control has been observed in many cancers, including mesothelioma. Malignant pleural mesothelioma (MPM) is a fatal cancer of the pleural membranes with poor therapeutic options. Recently, overexpression of the Hh transcriptional activator GL1 has been demonstrated to be associated with poor overall survival (OS) in MPM. However, unlike other cancers, the response to G-protein-coupled receptor smoothened (SMO)/Hh inhibitors is poor, mainly attributable to the lack of markers for patient stratification. For all these reasons, and in particular for the role of PC in the regulation of Hh, we investigated for the first time the status of PC in MPM tissues, demonstrating intra- and inter-heterogeneity in its expression. We also correlated the presence of PC with the activation of the Hh pathway, providing uncovered evidence of a PC-independent regulation of the Hh signaling in MPM. Our study contributes to the understanding MPM heterogeneity, thus helping to identify patients who might benefit from Hh inhibitors. MDPI 2022-10-25 /pmc/articles/PMC9654223/ /pubmed/36358635 http://dx.doi.org/10.3390/cancers14215216 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
Barbarino, Marcella
Bottaro, Maria
Spagnoletti, Laura
de Santi, Maria Margherita
Guazzo, Raffaella
Defraia, Chiara
Custoza, Cosimo
Serio, Gabriella
Iannelli, Francesco
Pesetti, Matilde
Aiello, Raffaele
Rosati, Diletta
Zanfrini, Edoardo
Luzzi, Luca
Bellan, Cristiana
Giordano, Antonio
Analysis of Primary Cilium Expression and Hedgehog Pathway Activation in Mesothelioma Throws Back Its Complex Biology
title Analysis of Primary Cilium Expression and Hedgehog Pathway Activation in Mesothelioma Throws Back Its Complex Biology
title_full Analysis of Primary Cilium Expression and Hedgehog Pathway Activation in Mesothelioma Throws Back Its Complex Biology
title_fullStr Analysis of Primary Cilium Expression and Hedgehog Pathway Activation in Mesothelioma Throws Back Its Complex Biology
title_full_unstemmed Analysis of Primary Cilium Expression and Hedgehog Pathway Activation in Mesothelioma Throws Back Its Complex Biology
title_short Analysis of Primary Cilium Expression and Hedgehog Pathway Activation in Mesothelioma Throws Back Its Complex Biology
title_sort analysis of primary cilium expression and hedgehog pathway activation in mesothelioma throws back its complex biology
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9654223/
https://www.ncbi.nlm.nih.gov/pubmed/36358635
http://dx.doi.org/10.3390/cancers14215216
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