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FER-mediated phosphorylation and PIK3R2 recruitment on IRS4 promotes AKT activation and tumorigenesis in ovarian cancer cells

Tyrosine phosphorylation, orchestrated by tyrosine kinases and phosphatases, modulates a multi-layered signaling network in a time- and space-dependent manner. Dysregulation of this post-translational modification is inevitably associated with pathological diseases. Our previous work has demonstrate...

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Autores principales: Zhang, Yanchun, Xiong, Xuexue, Zhu, Qi, Zhang, Jiali, Chen, Shengmiao, Wang, Yuetong, Cao, Jian, Chen, Li, Hou, Linjun, Zhao, Xi, Hao, Piliang, Chen, Jian, Zhuang, Min, Li, Dake, Fan, Gaofeng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9098222/
https://www.ncbi.nlm.nih.gov/pubmed/35550247
http://dx.doi.org/10.7554/eLife.76183
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author Zhang, Yanchun
Xiong, Xuexue
Zhu, Qi
Zhang, Jiali
Chen, Shengmiao
Wang, Yuetong
Cao, Jian
Chen, Li
Hou, Linjun
Zhao, Xi
Hao, Piliang
Chen, Jian
Zhuang, Min
Li, Dake
Fan, Gaofeng
author_facet Zhang, Yanchun
Xiong, Xuexue
Zhu, Qi
Zhang, Jiali
Chen, Shengmiao
Wang, Yuetong
Cao, Jian
Chen, Li
Hou, Linjun
Zhao, Xi
Hao, Piliang
Chen, Jian
Zhuang, Min
Li, Dake
Fan, Gaofeng
author_sort Zhang, Yanchun
collection PubMed
description Tyrosine phosphorylation, orchestrated by tyrosine kinases and phosphatases, modulates a multi-layered signaling network in a time- and space-dependent manner. Dysregulation of this post-translational modification is inevitably associated with pathological diseases. Our previous work has demonstrated that non-receptor tyrosine kinase FER is upregulated in ovarian cancer, knocking down which attenuates metastatic phenotypes. However, due to the limited number of known substrates in the ovarian cancer context, the molecular basis for its pro-proliferation activity remains enigmatic. Here, we employed mass spectrometry and biochemical approaches to identify insulin receptor substrate 4 (IRS4) as a novel substrate of FER. FER engaged its kinase domain to associate with the PH and PTB domains of IRS4. Using a proximity-based tagging system in ovarian carcinoma-derived OVCAR-5 cells, we determined that FER-mediated phosphorylation of Tyr779 enables IRS4 to recruit PIK3R2/p85β, the regulatory subunit of PI3K, and activate the PI3K-AKT pathway. Rescuing IRS4-null ovarian tumor cells with phosphorylation-defective mutant, but not WT IRS4 delayed ovarian tumor cell proliferation both in vitro and in vivo. Overall, we revealed a kinase-substrate mode between FER and IRS4, and the pharmacological inhibition of FER kinase may be beneficial for ovarian cancer patients with PI3K-AKT hyperactivation.
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spelling pubmed-90982222022-05-13 FER-mediated phosphorylation and PIK3R2 recruitment on IRS4 promotes AKT activation and tumorigenesis in ovarian cancer cells Zhang, Yanchun Xiong, Xuexue Zhu, Qi Zhang, Jiali Chen, Shengmiao Wang, Yuetong Cao, Jian Chen, Li Hou, Linjun Zhao, Xi Hao, Piliang Chen, Jian Zhuang, Min Li, Dake Fan, Gaofeng eLife Biochemistry and Chemical Biology Tyrosine phosphorylation, orchestrated by tyrosine kinases and phosphatases, modulates a multi-layered signaling network in a time- and space-dependent manner. Dysregulation of this post-translational modification is inevitably associated with pathological diseases. Our previous work has demonstrated that non-receptor tyrosine kinase FER is upregulated in ovarian cancer, knocking down which attenuates metastatic phenotypes. However, due to the limited number of known substrates in the ovarian cancer context, the molecular basis for its pro-proliferation activity remains enigmatic. Here, we employed mass spectrometry and biochemical approaches to identify insulin receptor substrate 4 (IRS4) as a novel substrate of FER. FER engaged its kinase domain to associate with the PH and PTB domains of IRS4. Using a proximity-based tagging system in ovarian carcinoma-derived OVCAR-5 cells, we determined that FER-mediated phosphorylation of Tyr779 enables IRS4 to recruit PIK3R2/p85β, the regulatory subunit of PI3K, and activate the PI3K-AKT pathway. Rescuing IRS4-null ovarian tumor cells with phosphorylation-defective mutant, but not WT IRS4 delayed ovarian tumor cell proliferation both in vitro and in vivo. Overall, we revealed a kinase-substrate mode between FER and IRS4, and the pharmacological inhibition of FER kinase may be beneficial for ovarian cancer patients with PI3K-AKT hyperactivation. eLife Sciences Publications, Ltd 2022-05-12 /pmc/articles/PMC9098222/ /pubmed/35550247 http://dx.doi.org/10.7554/eLife.76183 Text en © 2022, Zhang et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Biochemistry and Chemical Biology
Zhang, Yanchun
Xiong, Xuexue
Zhu, Qi
Zhang, Jiali
Chen, Shengmiao
Wang, Yuetong
Cao, Jian
Chen, Li
Hou, Linjun
Zhao, Xi
Hao, Piliang
Chen, Jian
Zhuang, Min
Li, Dake
Fan, Gaofeng
FER-mediated phosphorylation and PIK3R2 recruitment on IRS4 promotes AKT activation and tumorigenesis in ovarian cancer cells
title FER-mediated phosphorylation and PIK3R2 recruitment on IRS4 promotes AKT activation and tumorigenesis in ovarian cancer cells
title_full FER-mediated phosphorylation and PIK3R2 recruitment on IRS4 promotes AKT activation and tumorigenesis in ovarian cancer cells
title_fullStr FER-mediated phosphorylation and PIK3R2 recruitment on IRS4 promotes AKT activation and tumorigenesis in ovarian cancer cells
title_full_unstemmed FER-mediated phosphorylation and PIK3R2 recruitment on IRS4 promotes AKT activation and tumorigenesis in ovarian cancer cells
title_short FER-mediated phosphorylation and PIK3R2 recruitment on IRS4 promotes AKT activation and tumorigenesis in ovarian cancer cells
title_sort fer-mediated phosphorylation and pik3r2 recruitment on irs4 promotes akt activation and tumorigenesis in ovarian cancer cells
topic Biochemistry and Chemical Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9098222/
https://www.ncbi.nlm.nih.gov/pubmed/35550247
http://dx.doi.org/10.7554/eLife.76183
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