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ARF6 and AMAP1 are major targets of KRAS and TP53 mutations to promote invasion, PD-L1 dynamics, and immune evasion of pancreatic cancer

Although KRAS and TP53 mutations are major drivers of pancreatic ductal adenocarcinoma (PDAC), the incurable nature of this cancer still remains largely elusive. ARF6 and its effector AMAP1 are often overexpressed in different cancers and regulate the intracellular dynamics of integrins and E-cadher...

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Autores principales: Hashimoto, Shigeru, Furukawa, Shotaro, Hashimoto, Ari, Tsutaho, Akio, Fukao, Akira, Sakamura, Yurika, Parajuli, Gyanu, Onodera, Yasuhito, Otsuka, Yutaro, Handa, Haruka, Oikawa, Tsukasa, Hata, Soichiro, Nishikawa, Yoshihiro, Mizukami, Yusuke, Kodama, Yuzo, Murakami, Masaaki, Fujiwara, Toshinobu, Hirano, Satoshi, Sabe, Hisataka
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6717289/
https://www.ncbi.nlm.nih.gov/pubmed/31399545
http://dx.doi.org/10.1073/pnas.1901765116
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author Hashimoto, Shigeru
Furukawa, Shotaro
Hashimoto, Ari
Tsutaho, Akio
Fukao, Akira
Sakamura, Yurika
Parajuli, Gyanu
Onodera, Yasuhito
Otsuka, Yutaro
Handa, Haruka
Oikawa, Tsukasa
Hata, Soichiro
Nishikawa, Yoshihiro
Mizukami, Yusuke
Kodama, Yuzo
Murakami, Masaaki
Fujiwara, Toshinobu
Hirano, Satoshi
Sabe, Hisataka
author_facet Hashimoto, Shigeru
Furukawa, Shotaro
Hashimoto, Ari
Tsutaho, Akio
Fukao, Akira
Sakamura, Yurika
Parajuli, Gyanu
Onodera, Yasuhito
Otsuka, Yutaro
Handa, Haruka
Oikawa, Tsukasa
Hata, Soichiro
Nishikawa, Yoshihiro
Mizukami, Yusuke
Kodama, Yuzo
Murakami, Masaaki
Fujiwara, Toshinobu
Hirano, Satoshi
Sabe, Hisataka
author_sort Hashimoto, Shigeru
collection PubMed
description Although KRAS and TP53 mutations are major drivers of pancreatic ductal adenocarcinoma (PDAC), the incurable nature of this cancer still remains largely elusive. ARF6 and its effector AMAP1 are often overexpressed in different cancers and regulate the intracellular dynamics of integrins and E-cadherin, thus promoting tumor invasion and metastasis when ARF6 is activated. Here we show that the ARF6–AMAP1 pathway is a major target by which KRAS and TP53 cooperatively promote malignancy. KRAS was identified to promote eIF4A-dependent ARF6 mRNA translation, which contains a quadruplex structure at its 5′-untranslated region, by inducing TEAD3 and ETV4 to suppress PDCD4; and also eIF4E-dependent AMAP1 mRNA translation, which contains a 5′-terminal oligopyrimidine-like sequence, via up-regulating mTORC1. TP53 facilitated ARF6 activation by platelet-derived growth factor (PDGF), via its known function to promote the expression of PDGF receptor β (PDGFRβ) and enzymes of the mevalonate pathway (MVP). The ARF6–AMAP1 pathway was moreover essential for PDGF-driven recycling of PD-L1, in which KRAS, TP53, eIF4A/4E-dependent translation, mTOR, and MVP were all integral. We moreover demonstrated that the mouse PDAC model KPC cells, bearing KRAS/TP53 mutations, express ARF6 and AMAP1 at high levels and that the ARF6-based pathway is closely associated with immune evasion of KPC cells. Expression of ARF6 pathway components statistically correlated with poor patient outcomes. Thus, the cooperation among eIF4A/4E-dependent mRNA translation and MVP has emerged as a link by which pancreatic driver mutations may promote tumor cell motility, PD-L1 dynamics, and immune evasion, via empowering the ARF6-based pathway and its activation by external ligands.
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spelling pubmed-67172892019-09-13 ARF6 and AMAP1 are major targets of KRAS and TP53 mutations to promote invasion, PD-L1 dynamics, and immune evasion of pancreatic cancer Hashimoto, Shigeru Furukawa, Shotaro Hashimoto, Ari Tsutaho, Akio Fukao, Akira Sakamura, Yurika Parajuli, Gyanu Onodera, Yasuhito Otsuka, Yutaro Handa, Haruka Oikawa, Tsukasa Hata, Soichiro Nishikawa, Yoshihiro Mizukami, Yusuke Kodama, Yuzo Murakami, Masaaki Fujiwara, Toshinobu Hirano, Satoshi Sabe, Hisataka Proc Natl Acad Sci U S A PNAS Plus Although KRAS and TP53 mutations are major drivers of pancreatic ductal adenocarcinoma (PDAC), the incurable nature of this cancer still remains largely elusive. ARF6 and its effector AMAP1 are often overexpressed in different cancers and regulate the intracellular dynamics of integrins and E-cadherin, thus promoting tumor invasion and metastasis when ARF6 is activated. Here we show that the ARF6–AMAP1 pathway is a major target by which KRAS and TP53 cooperatively promote malignancy. KRAS was identified to promote eIF4A-dependent ARF6 mRNA translation, which contains a quadruplex structure at its 5′-untranslated region, by inducing TEAD3 and ETV4 to suppress PDCD4; and also eIF4E-dependent AMAP1 mRNA translation, which contains a 5′-terminal oligopyrimidine-like sequence, via up-regulating mTORC1. TP53 facilitated ARF6 activation by platelet-derived growth factor (PDGF), via its known function to promote the expression of PDGF receptor β (PDGFRβ) and enzymes of the mevalonate pathway (MVP). The ARF6–AMAP1 pathway was moreover essential for PDGF-driven recycling of PD-L1, in which KRAS, TP53, eIF4A/4E-dependent translation, mTOR, and MVP were all integral. We moreover demonstrated that the mouse PDAC model KPC cells, bearing KRAS/TP53 mutations, express ARF6 and AMAP1 at high levels and that the ARF6-based pathway is closely associated with immune evasion of KPC cells. Expression of ARF6 pathway components statistically correlated with poor patient outcomes. Thus, the cooperation among eIF4A/4E-dependent mRNA translation and MVP has emerged as a link by which pancreatic driver mutations may promote tumor cell motility, PD-L1 dynamics, and immune evasion, via empowering the ARF6-based pathway and its activation by external ligands. National Academy of Sciences 2019-08-27 2019-08-09 /pmc/articles/PMC6717289/ /pubmed/31399545 http://dx.doi.org/10.1073/pnas.1901765116 Text en Copyright © 2019 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/ https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle PNAS Plus
Hashimoto, Shigeru
Furukawa, Shotaro
Hashimoto, Ari
Tsutaho, Akio
Fukao, Akira
Sakamura, Yurika
Parajuli, Gyanu
Onodera, Yasuhito
Otsuka, Yutaro
Handa, Haruka
Oikawa, Tsukasa
Hata, Soichiro
Nishikawa, Yoshihiro
Mizukami, Yusuke
Kodama, Yuzo
Murakami, Masaaki
Fujiwara, Toshinobu
Hirano, Satoshi
Sabe, Hisataka
ARF6 and AMAP1 are major targets of KRAS and TP53 mutations to promote invasion, PD-L1 dynamics, and immune evasion of pancreatic cancer
title ARF6 and AMAP1 are major targets of KRAS and TP53 mutations to promote invasion, PD-L1 dynamics, and immune evasion of pancreatic cancer
title_full ARF6 and AMAP1 are major targets of KRAS and TP53 mutations to promote invasion, PD-L1 dynamics, and immune evasion of pancreatic cancer
title_fullStr ARF6 and AMAP1 are major targets of KRAS and TP53 mutations to promote invasion, PD-L1 dynamics, and immune evasion of pancreatic cancer
title_full_unstemmed ARF6 and AMAP1 are major targets of KRAS and TP53 mutations to promote invasion, PD-L1 dynamics, and immune evasion of pancreatic cancer
title_short ARF6 and AMAP1 are major targets of KRAS and TP53 mutations to promote invasion, PD-L1 dynamics, and immune evasion of pancreatic cancer
title_sort arf6 and amap1 are major targets of kras and tp53 mutations to promote invasion, pd-l1 dynamics, and immune evasion of pancreatic cancer
topic PNAS Plus
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6717289/
https://www.ncbi.nlm.nih.gov/pubmed/31399545
http://dx.doi.org/10.1073/pnas.1901765116
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