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Specific Roles of HSP27 S15 Phosphorylation Augmenting the Nuclear Function of HER2 to Promote Trastuzumab Resistance

Trastuzumab (TZMB) is widely used as first line therapy for breast cancer (BC) patients overexpressing human epidermal growth factor receptor 2 (HER2). Despite its clinical benefits, many patients suffer from primary or secondary resistance to this drug within one year. As diverse molecular mechanis...

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Autores principales: Hwang, Soo-Yeon, Choi, Seul-Ki, Seo, Seung Hee, Jo, Hyunji, Shin, Jae-Ho, Na, Younghwa, Lee, Yun-Sil, Kwon, Youngjoo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7352409/
https://www.ncbi.nlm.nih.gov/pubmed/32545363
http://dx.doi.org/10.3390/cancers12061540
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author Hwang, Soo-Yeon
Choi, Seul-Ki
Seo, Seung Hee
Jo, Hyunji
Shin, Jae-Ho
Na, Younghwa
Lee, Yun-Sil
Kwon, Youngjoo
author_facet Hwang, Soo-Yeon
Choi, Seul-Ki
Seo, Seung Hee
Jo, Hyunji
Shin, Jae-Ho
Na, Younghwa
Lee, Yun-Sil
Kwon, Youngjoo
author_sort Hwang, Soo-Yeon
collection PubMed
description Trastuzumab (TZMB) is widely used as first line therapy for breast cancer (BC) patients overexpressing human epidermal growth factor receptor 2 (HER2). Despite its clinical benefits, many patients suffer from primary or secondary resistance to this drug within one year. As diverse molecular mechanisms occur contemporaneously during the resistance development, we focused on elucidating the role of heat shock protein 27 (HSP27) in TZMB-resistance, as this protein simultaneously regulates the function of diverse client molecules that are involved in the resistance mechanism. By extensively utilizing TZMB-refractory breast cancer cell lines transduced with diverse phosphovariants of HSP27, our study newly revealed that specific phosphorylation of HSP27 at S15 promoted its S78 phosphorylation and served as key mediator to promote direct interactions that increase the stability of HER2 and protein kinase B (AKT). This phosphorylation promoted nuclear translocation of HER2, enhancing the distinct nuclear function of HER2 that promoted AKT activation and cyclin D1 expression. Co-administration of TZMB and a functional inhibitor of HSP27, J2, significantly reduced the S15/78 phosphorylation of HSP27, which downregulated HER2 and its downstream signals, sensitizing TZMB-refractory cell, and JIMT1-xenograft mouse models to TZMB. Collectively, p-HSP27(S15) could serve as a valuable predictive marker and also a therapeutic target for TZMB-resistance.
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spelling pubmed-73524092020-07-15 Specific Roles of HSP27 S15 Phosphorylation Augmenting the Nuclear Function of HER2 to Promote Trastuzumab Resistance Hwang, Soo-Yeon Choi, Seul-Ki Seo, Seung Hee Jo, Hyunji Shin, Jae-Ho Na, Younghwa Lee, Yun-Sil Kwon, Youngjoo Cancers (Basel) Article Trastuzumab (TZMB) is widely used as first line therapy for breast cancer (BC) patients overexpressing human epidermal growth factor receptor 2 (HER2). Despite its clinical benefits, many patients suffer from primary or secondary resistance to this drug within one year. As diverse molecular mechanisms occur contemporaneously during the resistance development, we focused on elucidating the role of heat shock protein 27 (HSP27) in TZMB-resistance, as this protein simultaneously regulates the function of diverse client molecules that are involved in the resistance mechanism. By extensively utilizing TZMB-refractory breast cancer cell lines transduced with diverse phosphovariants of HSP27, our study newly revealed that specific phosphorylation of HSP27 at S15 promoted its S78 phosphorylation and served as key mediator to promote direct interactions that increase the stability of HER2 and protein kinase B (AKT). This phosphorylation promoted nuclear translocation of HER2, enhancing the distinct nuclear function of HER2 that promoted AKT activation and cyclin D1 expression. Co-administration of TZMB and a functional inhibitor of HSP27, J2, significantly reduced the S15/78 phosphorylation of HSP27, which downregulated HER2 and its downstream signals, sensitizing TZMB-refractory cell, and JIMT1-xenograft mouse models to TZMB. Collectively, p-HSP27(S15) could serve as a valuable predictive marker and also a therapeutic target for TZMB-resistance. MDPI 2020-06-11 /pmc/articles/PMC7352409/ /pubmed/32545363 http://dx.doi.org/10.3390/cancers12061540 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hwang, Soo-Yeon
Choi, Seul-Ki
Seo, Seung Hee
Jo, Hyunji
Shin, Jae-Ho
Na, Younghwa
Lee, Yun-Sil
Kwon, Youngjoo
Specific Roles of HSP27 S15 Phosphorylation Augmenting the Nuclear Function of HER2 to Promote Trastuzumab Resistance
title Specific Roles of HSP27 S15 Phosphorylation Augmenting the Nuclear Function of HER2 to Promote Trastuzumab Resistance
title_full Specific Roles of HSP27 S15 Phosphorylation Augmenting the Nuclear Function of HER2 to Promote Trastuzumab Resistance
title_fullStr Specific Roles of HSP27 S15 Phosphorylation Augmenting the Nuclear Function of HER2 to Promote Trastuzumab Resistance
title_full_unstemmed Specific Roles of HSP27 S15 Phosphorylation Augmenting the Nuclear Function of HER2 to Promote Trastuzumab Resistance
title_short Specific Roles of HSP27 S15 Phosphorylation Augmenting the Nuclear Function of HER2 to Promote Trastuzumab Resistance
title_sort specific roles of hsp27 s15 phosphorylation augmenting the nuclear function of her2 to promote trastuzumab resistance
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7352409/
https://www.ncbi.nlm.nih.gov/pubmed/32545363
http://dx.doi.org/10.3390/cancers12061540
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