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CNKSR1 serves as a scaffold to activate an EGFR phosphatase via exclusive interaction with RhoB-GTP

Epidermal growth factor receptor (EGFR) and human EGFR 2 (HER2) phosphorylation drives HER2-positive breast cancer cell proliferation. Enforced activation of phosphatases for those receptors could be a therapeutic option for HER2-positive breast cancers. Here, we report that degradation of an endoso...

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Autores principales: Nishiyama, Kanako, Maekawa, Masashi, Nakagita, Tomoya, Nakayama, Jun, Kiyoi, Takeshi, Chosei, Mami, Murakami, Akari, Kamei, Yoshiaki, Takeda, Hiroyuki, Takada, Yasutsugu, Higashiyama, Shigeki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Life Science Alliance LLC 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8321701/
https://www.ncbi.nlm.nih.gov/pubmed/34187934
http://dx.doi.org/10.26508/lsa.202101095
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author Nishiyama, Kanako
Maekawa, Masashi
Nakagita, Tomoya
Nakayama, Jun
Kiyoi, Takeshi
Chosei, Mami
Murakami, Akari
Kamei, Yoshiaki
Takeda, Hiroyuki
Takada, Yasutsugu
Higashiyama, Shigeki
author_facet Nishiyama, Kanako
Maekawa, Masashi
Nakagita, Tomoya
Nakayama, Jun
Kiyoi, Takeshi
Chosei, Mami
Murakami, Akari
Kamei, Yoshiaki
Takeda, Hiroyuki
Takada, Yasutsugu
Higashiyama, Shigeki
author_sort Nishiyama, Kanako
collection PubMed
description Epidermal growth factor receptor (EGFR) and human EGFR 2 (HER2) phosphorylation drives HER2-positive breast cancer cell proliferation. Enforced activation of phosphatases for those receptors could be a therapeutic option for HER2-positive breast cancers. Here, we report that degradation of an endosomal small GTPase, RhoB, by the ubiquitin ligase complex cullin-3 (CUL3)/KCTD10 is essential for both EGFR and HER2 phosphorylation in HER2-positive breast cancer cells. Using human protein arrays produced in a wheat cell-free protein synthesis system, RhoB-GTP, and protein tyrosine phosphatase receptor type H (PTPRH) were identified as interacting proteins of connector enhancer of kinase suppressor of Ras1 (CNKSR1). Mechanistically, constitutive degradation of RhoB, which is mediated by the CUL3/KCTD10 E3 complex, enabled CNKSR1 to interact with PTPRH at the plasma membrane resulting in inactivation of EGFR phosphatase activity. Depletion of CUL3 or KCTD10 led to the accumulation of RhoB-GTP at the plasma membrane followed by its interaction with CNKSR1, which released activated PTPRH from CNKSR1. This study suggests a mechanism of PTPRH activation through the exclusive binding of RhoB-GTP to CNKSR1.
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spelling pubmed-83217012021-08-04 CNKSR1 serves as a scaffold to activate an EGFR phosphatase via exclusive interaction with RhoB-GTP Nishiyama, Kanako Maekawa, Masashi Nakagita, Tomoya Nakayama, Jun Kiyoi, Takeshi Chosei, Mami Murakami, Akari Kamei, Yoshiaki Takeda, Hiroyuki Takada, Yasutsugu Higashiyama, Shigeki Life Sci Alliance Research Articles Epidermal growth factor receptor (EGFR) and human EGFR 2 (HER2) phosphorylation drives HER2-positive breast cancer cell proliferation. Enforced activation of phosphatases for those receptors could be a therapeutic option for HER2-positive breast cancers. Here, we report that degradation of an endosomal small GTPase, RhoB, by the ubiquitin ligase complex cullin-3 (CUL3)/KCTD10 is essential for both EGFR and HER2 phosphorylation in HER2-positive breast cancer cells. Using human protein arrays produced in a wheat cell-free protein synthesis system, RhoB-GTP, and protein tyrosine phosphatase receptor type H (PTPRH) were identified as interacting proteins of connector enhancer of kinase suppressor of Ras1 (CNKSR1). Mechanistically, constitutive degradation of RhoB, which is mediated by the CUL3/KCTD10 E3 complex, enabled CNKSR1 to interact with PTPRH at the plasma membrane resulting in inactivation of EGFR phosphatase activity. Depletion of CUL3 or KCTD10 led to the accumulation of RhoB-GTP at the plasma membrane followed by its interaction with CNKSR1, which released activated PTPRH from CNKSR1. This study suggests a mechanism of PTPRH activation through the exclusive binding of RhoB-GTP to CNKSR1. Life Science Alliance LLC 2021-06-29 /pmc/articles/PMC8321701/ /pubmed/34187934 http://dx.doi.org/10.26508/lsa.202101095 Text en © 2021 Nishiyama 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
Nishiyama, Kanako
Maekawa, Masashi
Nakagita, Tomoya
Nakayama, Jun
Kiyoi, Takeshi
Chosei, Mami
Murakami, Akari
Kamei, Yoshiaki
Takeda, Hiroyuki
Takada, Yasutsugu
Higashiyama, Shigeki
CNKSR1 serves as a scaffold to activate an EGFR phosphatase via exclusive interaction with RhoB-GTP
title CNKSR1 serves as a scaffold to activate an EGFR phosphatase via exclusive interaction with RhoB-GTP
title_full CNKSR1 serves as a scaffold to activate an EGFR phosphatase via exclusive interaction with RhoB-GTP
title_fullStr CNKSR1 serves as a scaffold to activate an EGFR phosphatase via exclusive interaction with RhoB-GTP
title_full_unstemmed CNKSR1 serves as a scaffold to activate an EGFR phosphatase via exclusive interaction with RhoB-GTP
title_short CNKSR1 serves as a scaffold to activate an EGFR phosphatase via exclusive interaction with RhoB-GTP
title_sort cnksr1 serves as a scaffold to activate an egfr phosphatase via exclusive interaction with rhob-gtp
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8321701/
https://www.ncbi.nlm.nih.gov/pubmed/34187934
http://dx.doi.org/10.26508/lsa.202101095
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