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Tumor-specific interendothelial adhesion mediated by FLRT2 facilitates cancer aggressiveness

Blood vessel abnormalization alters cancer cell metabolism and promotes cancer dissemination and metastasis. However, the biological features of the abnormalized blood vessels that facilitate cancer progression and whether they can be targeted therapeutically have not been fully investigated. Here,...

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Autores principales: Ando, Tomofumi, Tai-Nagara, Ikue, Sugiura, Yuki, Kusumoto, Dai, Okabayashi, Koji, Kido, Yasuaki, Sato, Kohji, Saya, Hideyuki, Navankasattusas, Sutip, Li, Dean Y., Suematsu, Makoto, Kitagawa, Yuko, Seiradake, Elena, Yamagishi, Satoru, Kubota, Yoshiaki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8920344/
https://www.ncbi.nlm.nih.gov/pubmed/35104247
http://dx.doi.org/10.1172/JCI153626
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author Ando, Tomofumi
Tai-Nagara, Ikue
Sugiura, Yuki
Kusumoto, Dai
Okabayashi, Koji
Kido, Yasuaki
Sato, Kohji
Saya, Hideyuki
Navankasattusas, Sutip
Li, Dean Y.
Suematsu, Makoto
Kitagawa, Yuko
Seiradake, Elena
Yamagishi, Satoru
Kubota, Yoshiaki
author_facet Ando, Tomofumi
Tai-Nagara, Ikue
Sugiura, Yuki
Kusumoto, Dai
Okabayashi, Koji
Kido, Yasuaki
Sato, Kohji
Saya, Hideyuki
Navankasattusas, Sutip
Li, Dean Y.
Suematsu, Makoto
Kitagawa, Yuko
Seiradake, Elena
Yamagishi, Satoru
Kubota, Yoshiaki
author_sort Ando, Tomofumi
collection PubMed
description Blood vessel abnormalization alters cancer cell metabolism and promotes cancer dissemination and metastasis. However, the biological features of the abnormalized blood vessels that facilitate cancer progression and whether they can be targeted therapeutically have not been fully investigated. Here, we found that an axon guidance molecule, fibronectin leucine-rich transmembrane protein 2 (FLRT2), is expressed preferentially in abnormalized vessels of advanced colorectal cancers in humans and that its expression correlates negatively with long-term survival. Endothelial cell–specific deletion of Flrt2 in mice selectively pruned abnormalized vessels, resulting in a unique metabolic state termed “oxygen-glucose uncoupling,” which suppressed tumor metastasis. Moreover, Flrt2 deletion caused an increase in the number of mature vessels, resulting in a significant increase in the antitumor effects of immune checkpoint blockers. Mechanistically, we found that FLRT2 forms noncanonical interendothelial adhesions that safeguard against oxidative stress through homophilic binding. Together, our results demonstrated the existence of tumor-specific interendothelial adhesions that enable abnormalized vessels to facilitate cancer aggressiveness. Targeting this type of adhesion complex could be a safe and effective therapeutic option to suppress cancer progression.
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spelling pubmed-89203442022-03-19 Tumor-specific interendothelial adhesion mediated by FLRT2 facilitates cancer aggressiveness Ando, Tomofumi Tai-Nagara, Ikue Sugiura, Yuki Kusumoto, Dai Okabayashi, Koji Kido, Yasuaki Sato, Kohji Saya, Hideyuki Navankasattusas, Sutip Li, Dean Y. Suematsu, Makoto Kitagawa, Yuko Seiradake, Elena Yamagishi, Satoru Kubota, Yoshiaki J Clin Invest Research Article Blood vessel abnormalization alters cancer cell metabolism and promotes cancer dissemination and metastasis. However, the biological features of the abnormalized blood vessels that facilitate cancer progression and whether they can be targeted therapeutically have not been fully investigated. Here, we found that an axon guidance molecule, fibronectin leucine-rich transmembrane protein 2 (FLRT2), is expressed preferentially in abnormalized vessels of advanced colorectal cancers in humans and that its expression correlates negatively with long-term survival. Endothelial cell–specific deletion of Flrt2 in mice selectively pruned abnormalized vessels, resulting in a unique metabolic state termed “oxygen-glucose uncoupling,” which suppressed tumor metastasis. Moreover, Flrt2 deletion caused an increase in the number of mature vessels, resulting in a significant increase in the antitumor effects of immune checkpoint blockers. Mechanistically, we found that FLRT2 forms noncanonical interendothelial adhesions that safeguard against oxidative stress through homophilic binding. Together, our results demonstrated the existence of tumor-specific interendothelial adhesions that enable abnormalized vessels to facilitate cancer aggressiveness. Targeting this type of adhesion complex could be a safe and effective therapeutic option to suppress cancer progression. American Society for Clinical Investigation 2022-03-15 2022-03-15 /pmc/articles/PMC8920344/ /pubmed/35104247 http://dx.doi.org/10.1172/JCI153626 Text en © 2022 Ando et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Ando, Tomofumi
Tai-Nagara, Ikue
Sugiura, Yuki
Kusumoto, Dai
Okabayashi, Koji
Kido, Yasuaki
Sato, Kohji
Saya, Hideyuki
Navankasattusas, Sutip
Li, Dean Y.
Suematsu, Makoto
Kitagawa, Yuko
Seiradake, Elena
Yamagishi, Satoru
Kubota, Yoshiaki
Tumor-specific interendothelial adhesion mediated by FLRT2 facilitates cancer aggressiveness
title Tumor-specific interendothelial adhesion mediated by FLRT2 facilitates cancer aggressiveness
title_full Tumor-specific interendothelial adhesion mediated by FLRT2 facilitates cancer aggressiveness
title_fullStr Tumor-specific interendothelial adhesion mediated by FLRT2 facilitates cancer aggressiveness
title_full_unstemmed Tumor-specific interendothelial adhesion mediated by FLRT2 facilitates cancer aggressiveness
title_short Tumor-specific interendothelial adhesion mediated by FLRT2 facilitates cancer aggressiveness
title_sort tumor-specific interendothelial adhesion mediated by flrt2 facilitates cancer aggressiveness
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8920344/
https://www.ncbi.nlm.nih.gov/pubmed/35104247
http://dx.doi.org/10.1172/JCI153626
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