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Analysis of origin and protein-protein interaction maps suggests distinct oncogenic role of nuclear EGFR during cancer evolution

Receptor tyrosine kinase EGFR usually is localized on plasma membrane to induce progression of many cancers including cancers in children (Bodey et al. In Vivo. 2005, 19:931-41), but it contains a nuclear localization signal (NLS) that mediates EGFR nuclear translocation (Lin et al. Nat Cell Biol. 2...

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Autores principales: Sharip, Ainur, Abdukhakimova, Diyora, Wang, Xiao, Kim, Alexey, Kim, Yevgeniy, Sharip, Aigul, Orakov, Askarbek, Miao, Lixia, Sun, Qinglei, Chen, Yue, Chen, Zhenbang, Xie, Yingqiu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5381180/
https://www.ncbi.nlm.nih.gov/pubmed/28382154
http://dx.doi.org/10.7150/jca.17961
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author Sharip, Ainur
Abdukhakimova, Diyora
Wang, Xiao
Kim, Alexey
Kim, Yevgeniy
Sharip, Aigul
Orakov, Askarbek
Miao, Lixia
Sun, Qinglei
Chen, Yue
Chen, Zhenbang
Xie, Yingqiu
author_facet Sharip, Ainur
Abdukhakimova, Diyora
Wang, Xiao
Kim, Alexey
Kim, Yevgeniy
Sharip, Aigul
Orakov, Askarbek
Miao, Lixia
Sun, Qinglei
Chen, Yue
Chen, Zhenbang
Xie, Yingqiu
author_sort Sharip, Ainur
collection PubMed
description Receptor tyrosine kinase EGFR usually is localized on plasma membrane to induce progression of many cancers including cancers in children (Bodey et al. In Vivo. 2005, 19:931-41), but it contains a nuclear localization signal (NLS) that mediates EGFR nuclear translocation (Lin et al. Nat Cell Biol. 2001, 3:802-8). Here we report that NLS of EGFR has its old evolutionary origin. Protein-protein interaction maps suggests that nEGFR pathways are different from membrane EGFR and EGF is not found in nEGFR network while androgen receptor (AR) is found, which suggests the evolution of prostate cancer, a well-known AR driven cancer, through changes in androgen- or EGF-dependence. Database analysis suggests that nEGFR correlates with the tumor grades especially in prostate cancer patients. Structural predication analysis suggests that NLS can compromise the differential protein binding to EGFR through stretch linkers with evolutionary mutation from N to V. In experiment, elevation of nEGFR but not membrane EGFR was found in castration resistant prostate cancer cells. Finally, systems analysis of NLS and transmembrane domain (TM) suggests that NLS has old origin while NLS neighboring domain of TM has been undergone accelerated evolution. Thus nEGFR has an old origin resembling the cancer evolution but TM may interfere with NLS driven signaling for natural selection of survival to evade NLS induced aggressive cancers. Our data suggest NLS is a dynamic inducer of EGFR oncogenesis during evolution for advanced cancers. Our model provides novel insights into the evolutionary role of NLS of oncogenic kinases in cancers.
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spelling pubmed-53811802017-04-05 Analysis of origin and protein-protein interaction maps suggests distinct oncogenic role of nuclear EGFR during cancer evolution Sharip, Ainur Abdukhakimova, Diyora Wang, Xiao Kim, Alexey Kim, Yevgeniy Sharip, Aigul Orakov, Askarbek Miao, Lixia Sun, Qinglei Chen, Yue Chen, Zhenbang Xie, Yingqiu J Cancer Research Paper Receptor tyrosine kinase EGFR usually is localized on plasma membrane to induce progression of many cancers including cancers in children (Bodey et al. In Vivo. 2005, 19:931-41), but it contains a nuclear localization signal (NLS) that mediates EGFR nuclear translocation (Lin et al. Nat Cell Biol. 2001, 3:802-8). Here we report that NLS of EGFR has its old evolutionary origin. Protein-protein interaction maps suggests that nEGFR pathways are different from membrane EGFR and EGF is not found in nEGFR network while androgen receptor (AR) is found, which suggests the evolution of prostate cancer, a well-known AR driven cancer, through changes in androgen- or EGF-dependence. Database analysis suggests that nEGFR correlates with the tumor grades especially in prostate cancer patients. Structural predication analysis suggests that NLS can compromise the differential protein binding to EGFR through stretch linkers with evolutionary mutation from N to V. In experiment, elevation of nEGFR but not membrane EGFR was found in castration resistant prostate cancer cells. Finally, systems analysis of NLS and transmembrane domain (TM) suggests that NLS has old origin while NLS neighboring domain of TM has been undergone accelerated evolution. Thus nEGFR has an old origin resembling the cancer evolution but TM may interfere with NLS driven signaling for natural selection of survival to evade NLS induced aggressive cancers. Our data suggest NLS is a dynamic inducer of EGFR oncogenesis during evolution for advanced cancers. Our model provides novel insights into the evolutionary role of NLS of oncogenic kinases in cancers. Ivyspring International Publisher 2017-03-12 /pmc/articles/PMC5381180/ /pubmed/28382154 http://dx.doi.org/10.7150/jca.17961 Text en © Ivyspring International Publisher This is an open access article distributed under the terms of the Creative Commons Attribution (CC BY-NC) license (https://creativecommons.org/licenses/by-nc/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Sharip, Ainur
Abdukhakimova, Diyora
Wang, Xiao
Kim, Alexey
Kim, Yevgeniy
Sharip, Aigul
Orakov, Askarbek
Miao, Lixia
Sun, Qinglei
Chen, Yue
Chen, Zhenbang
Xie, Yingqiu
Analysis of origin and protein-protein interaction maps suggests distinct oncogenic role of nuclear EGFR during cancer evolution
title Analysis of origin and protein-protein interaction maps suggests distinct oncogenic role of nuclear EGFR during cancer evolution
title_full Analysis of origin and protein-protein interaction maps suggests distinct oncogenic role of nuclear EGFR during cancer evolution
title_fullStr Analysis of origin and protein-protein interaction maps suggests distinct oncogenic role of nuclear EGFR during cancer evolution
title_full_unstemmed Analysis of origin and protein-protein interaction maps suggests distinct oncogenic role of nuclear EGFR during cancer evolution
title_short Analysis of origin and protein-protein interaction maps suggests distinct oncogenic role of nuclear EGFR during cancer evolution
title_sort analysis of origin and protein-protein interaction maps suggests distinct oncogenic role of nuclear egfr during cancer evolution
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5381180/
https://www.ncbi.nlm.nih.gov/pubmed/28382154
http://dx.doi.org/10.7150/jca.17961
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