Kras-driven intratumoral heterogeneity triggers infiltration of M2 polarized macrophages via the circHIPK3/PTK2 immunosuppressive circuit

Abstract Intratumoral heterogeneity in lung cancer is essential for evasion of immune surveillance by tumor cells and establishment of immunosuppression. Gathering data reveal that circular RNAs (circRNAs), play a role in the pathogenesis and progression of lung cancer. Particularly Kras-driven circ...

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Main Authors: Theodora Katopodi, Savvas Petanidis, Kalliopi Domvri, Paul Zarogoulidis, Doxakis Anestakis, Charalampos Charalampidis, Drosos Tsavlis, Chong Bai, Haidong Huang, Lutz Freitag, Wolfgang Hohenforst-Schmidt, Dimitris Matthaios, Konstantinos Porpodis
Format: Article
Language:English
Published: Nature Publishing Group 2021-07-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-021-94671-x
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spelling doaj-388a6ebb7f354e219da11d242f0c7a1d2021-08-01T11:24:02ZengNature Publishing GroupScientific Reports2045-23222021-07-0111111510.1038/s41598-021-94671-xKras-driven intratumoral heterogeneity triggers infiltration of M2 polarized macrophages via the circHIPK3/PTK2 immunosuppressive circuitTheodora Katopodi0Savvas Petanidis1Kalliopi Domvri2Paul Zarogoulidis3Doxakis Anestakis4Charalampos Charalampidis5Drosos Tsavlis6Chong Bai7Haidong Huang8Lutz Freitag9Wolfgang Hohenforst-Schmidt10Dimitris Matthaios11Konstantinos Porpodis12Department of Medicine, Laboratory of Medical Biology and Genetics, Aristotle University of ThessalonikiDepartment of Medicine, Laboratory of Medical Biology and Genetics, Aristotle University of ThessalonikiPulmonary Department-Oncology Unit, “G. Papanikolaou” General Hospital, Aristotle University of ThessalonikiThird Department of Surgery, “AHEPA” University Hospital, Aristotle University of ThessalonikiDepartment of Anatomy, Medical School, University of CyprusDepartment of Anatomy, Medical School, University of CyprusDepartment of Medicine, Laboratory of Experimental Physiology, Aristotle University of ThessalonikiDepartment of Respiratory and Critical Care Medicine, Changhai Hospital, Second Military Medical UniversityDepartment of Respiratory and Critical Care Medicine, Changhai Hospital, Second Military Medical UniversityDepartment of Pulmonology, University Hospital ZurichMedical Clinic I, “Fuerth” Hospital, University of ErlangenOncology Department, General Hospital of RodosPulmonary Department-Oncology Unit, “G. Papanikolaou” General Hospital, Aristotle University of ThessalonikiAbstract Intratumoral heterogeneity in lung cancer is essential for evasion of immune surveillance by tumor cells and establishment of immunosuppression. Gathering data reveal that circular RNAs (circRNAs), play a role in the pathogenesis and progression of lung cancer. Particularly Kras-driven circRNA signaling triggers infiltration of myeloid-associated tumor macrophages in lung tumor microenvironment thus establishing immune deregulation, and immunosuppression but the exact pathogenic mechanism is still unknown. In this study, we investigate the role of oncogenic Kras signaling in circRNA-related immunosuppression and its involvement in tumoral chemoresistance. The expression pattern of circRNAs HIPK3 and PTK2 was determined using quantitative polymerase chain reaction (qPCR) in lung cancer patient samples and cell lines. Apoptosis was analyzed by Annexin V/PI staining and FACS detection. M2 macrophage polarization and MDSC subset analysis (Gr1−/CD11b−, Gr1−/CD11b+) were determined by flow cytometry. Tumor growth and metastatic potential were determined in vivo in C57BL/6 mice. Findings reveal intra-epithelial CD163+/CD206+ M2 macrophages to drive Kras immunosuppressive chemoresistance through myeloid differentiation. In particular, monocytic MDSC subsets Gr1−/CD11b−, Gr1−/CD11b+ triggered an M2-dependent immune response, creating an immunosuppressive tumor-promoting network via circHIPK3/PTK2 enrichment. Specifically, upregulation of exosomal cicHIPK3/PTK2 expression prompted Kras-driven intratumoral heterogeneity and guided lymph node metastasis in C57BL/6 mice. Consequent co-inhibition of circPTK2/M2 macrophage signaling suppressed lung tumor growth along with metastatic potential and prolonged survival in vivo. Taken together, these results demonstrate the key role of myeloid-associated macrophages in sustaining lung immunosuppressive neoplasia through circRNA regulation and represent a potential therapeutic target for clinical intervention in metastatic lung cancer.https://doi.org/10.1038/s41598-021-94671-x
collection DOAJ
language English
format Article
sources DOAJ
author Theodora Katopodi
Savvas Petanidis
Kalliopi Domvri
Paul Zarogoulidis
Doxakis Anestakis
Charalampos Charalampidis
Drosos Tsavlis
Chong Bai
Haidong Huang
Lutz Freitag
Wolfgang Hohenforst-Schmidt
Dimitris Matthaios
Konstantinos Porpodis
spellingShingle Theodora Katopodi
Savvas Petanidis
Kalliopi Domvri
Paul Zarogoulidis
Doxakis Anestakis
Charalampos Charalampidis
Drosos Tsavlis
Chong Bai
Haidong Huang
Lutz Freitag
Wolfgang Hohenforst-Schmidt
Dimitris Matthaios
Konstantinos Porpodis
Kras-driven intratumoral heterogeneity triggers infiltration of M2 polarized macrophages via the circHIPK3/PTK2 immunosuppressive circuit
Scientific Reports
author_facet Theodora Katopodi
Savvas Petanidis
Kalliopi Domvri
Paul Zarogoulidis
Doxakis Anestakis
Charalampos Charalampidis
Drosos Tsavlis
Chong Bai
Haidong Huang
Lutz Freitag
Wolfgang Hohenforst-Schmidt
Dimitris Matthaios
Konstantinos Porpodis
author_sort Theodora Katopodi
title Kras-driven intratumoral heterogeneity triggers infiltration of M2 polarized macrophages via the circHIPK3/PTK2 immunosuppressive circuit
title_short Kras-driven intratumoral heterogeneity triggers infiltration of M2 polarized macrophages via the circHIPK3/PTK2 immunosuppressive circuit
title_full Kras-driven intratumoral heterogeneity triggers infiltration of M2 polarized macrophages via the circHIPK3/PTK2 immunosuppressive circuit
title_fullStr Kras-driven intratumoral heterogeneity triggers infiltration of M2 polarized macrophages via the circHIPK3/PTK2 immunosuppressive circuit
title_full_unstemmed Kras-driven intratumoral heterogeneity triggers infiltration of M2 polarized macrophages via the circHIPK3/PTK2 immunosuppressive circuit
title_sort kras-driven intratumoral heterogeneity triggers infiltration of m2 polarized macrophages via the circhipk3/ptk2 immunosuppressive circuit
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2021-07-01
description Abstract Intratumoral heterogeneity in lung cancer is essential for evasion of immune surveillance by tumor cells and establishment of immunosuppression. Gathering data reveal that circular RNAs (circRNAs), play a role in the pathogenesis and progression of lung cancer. Particularly Kras-driven circRNA signaling triggers infiltration of myeloid-associated tumor macrophages in lung tumor microenvironment thus establishing immune deregulation, and immunosuppression but the exact pathogenic mechanism is still unknown. In this study, we investigate the role of oncogenic Kras signaling in circRNA-related immunosuppression and its involvement in tumoral chemoresistance. The expression pattern of circRNAs HIPK3 and PTK2 was determined using quantitative polymerase chain reaction (qPCR) in lung cancer patient samples and cell lines. Apoptosis was analyzed by Annexin V/PI staining and FACS detection. M2 macrophage polarization and MDSC subset analysis (Gr1−/CD11b−, Gr1−/CD11b+) were determined by flow cytometry. Tumor growth and metastatic potential were determined in vivo in C57BL/6 mice. Findings reveal intra-epithelial CD163+/CD206+ M2 macrophages to drive Kras immunosuppressive chemoresistance through myeloid differentiation. In particular, monocytic MDSC subsets Gr1−/CD11b−, Gr1−/CD11b+ triggered an M2-dependent immune response, creating an immunosuppressive tumor-promoting network via circHIPK3/PTK2 enrichment. Specifically, upregulation of exosomal cicHIPK3/PTK2 expression prompted Kras-driven intratumoral heterogeneity and guided lymph node metastasis in C57BL/6 mice. Consequent co-inhibition of circPTK2/M2 macrophage signaling suppressed lung tumor growth along with metastatic potential and prolonged survival in vivo. Taken together, these results demonstrate the key role of myeloid-associated macrophages in sustaining lung immunosuppressive neoplasia through circRNA regulation and represent a potential therapeutic target for clinical intervention in metastatic lung cancer.
url https://doi.org/10.1038/s41598-021-94671-x
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