Bag‐1‐mediated HSF1 phosphorylation regulates expression of heat shock proteins in breast cancer cells

According to the World Health Organization in 2022, 2.3 million women were diagnosed with breast cancer. Investigating the interaction networks between Bcl‐2‐associated athanogene (Bag)‐1 and other chaperone proteins may further the current understanding of the regulation of protein homeostasis in b...

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Published in:FEBS Open Bio
Main Authors: Tugba Kizilboga, Can Özden, Nisan Denizce Can, Evren Onay Ucar, Gizem Dinler Doganay
Format: Article
Language:English
Published: Wiley 2024-09-01
Subjects:
Online Access:https://doi.org/10.1002/2211-5463.13843
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author Tugba Kizilboga
Can Özden
Nisan Denizce Can
Evren Onay Ucar
Gizem Dinler Doganay
author_facet Tugba Kizilboga
Can Özden
Nisan Denizce Can
Evren Onay Ucar
Gizem Dinler Doganay
author_sort Tugba Kizilboga
collection DOAJ
container_title FEBS Open Bio
description According to the World Health Organization in 2022, 2.3 million women were diagnosed with breast cancer. Investigating the interaction networks between Bcl‐2‐associated athanogene (Bag)‐1 and other chaperone proteins may further the current understanding of the regulation of protein homeostasis in breast cancer cells and contribute to the development of treatment options. The present study aimed to determine the interactions between Bag‐1 and heat shock proteins (HSPs); namely, HSP90, HSP70 and HSP27, to elucidate their role in promoting heat shock factor‐1 (HSF1)‐dependent survival of breast cancer cells. HER2‐negative (MCF‐7) and HER2‐positive (BT‐474) cell lines were used to examine the impact of Bag‐1 expression on HSF1 and HSPs. We demonstrated that Bag‐1 overexpression promoted HER2 expression in breast cancer cells, thereby resulting in the concurrent constitutive activation of the HSF1–HSP axis. The activation of HSP results in the stabilization of several tumor‐promoting HSP clients such as AKT, mTOR and HSF1 itself, which substantially accelerates tumor development. Our results suggest that Bag‐1 can modulate the chaperone activity of HSPs, such as HSP27, by directly or indirectly regulating the phosphorylation of HSF1. This modulation of chaperone activity can influence the activation of genes involved in cellular homeostasis, thereby protecting cells against stress.
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spelling doaj-art-29d9cfd94de345579a09e6e9f4abe6532025-08-19T23:12:17ZengWileyFEBS Open Bio2211-54632024-09-011491559156910.1002/2211-5463.13843Bag‐1‐mediated HSF1 phosphorylation regulates expression of heat shock proteins in breast cancer cellsTugba Kizilboga0Can Özden1Nisan Denizce Can2Evren Onay Ucar3Gizem Dinler Doganay4Department of Molecular Biology and Genetics Istanbul Technical University TurkeyDepartment of Molecular Biology and Genetics Istanbul Technical University TurkeyDepartment of Molecular Biology and Genetics Istanbul Technical University TurkeyDepartment of Molecular Biology and Genetics, Faculty of Sciences Istanbul University TurkeyDepartment of Molecular Biology and Genetics Istanbul Technical University TurkeyAccording to the World Health Organization in 2022, 2.3 million women were diagnosed with breast cancer. Investigating the interaction networks between Bcl‐2‐associated athanogene (Bag)‐1 and other chaperone proteins may further the current understanding of the regulation of protein homeostasis in breast cancer cells and contribute to the development of treatment options. The present study aimed to determine the interactions between Bag‐1 and heat shock proteins (HSPs); namely, HSP90, HSP70 and HSP27, to elucidate their role in promoting heat shock factor‐1 (HSF1)‐dependent survival of breast cancer cells. HER2‐negative (MCF‐7) and HER2‐positive (BT‐474) cell lines were used to examine the impact of Bag‐1 expression on HSF1 and HSPs. We demonstrated that Bag‐1 overexpression promoted HER2 expression in breast cancer cells, thereby resulting in the concurrent constitutive activation of the HSF1–HSP axis. The activation of HSP results in the stabilization of several tumor‐promoting HSP clients such as AKT, mTOR and HSF1 itself, which substantially accelerates tumor development. Our results suggest that Bag‐1 can modulate the chaperone activity of HSPs, such as HSP27, by directly or indirectly regulating the phosphorylation of HSF1. This modulation of chaperone activity can influence the activation of genes involved in cellular homeostasis, thereby protecting cells against stress.https://doi.org/10.1002/2211-5463.13843Bag‐1breast cancerchaperonesHER2HSF1
spellingShingle Tugba Kizilboga
Can Özden
Nisan Denizce Can
Evren Onay Ucar
Gizem Dinler Doganay
Bag‐1‐mediated HSF1 phosphorylation regulates expression of heat shock proteins in breast cancer cells
Bag‐1
breast cancer
chaperones
HER2
HSF1
title Bag‐1‐mediated HSF1 phosphorylation regulates expression of heat shock proteins in breast cancer cells
title_full Bag‐1‐mediated HSF1 phosphorylation regulates expression of heat shock proteins in breast cancer cells
title_fullStr Bag‐1‐mediated HSF1 phosphorylation regulates expression of heat shock proteins in breast cancer cells
title_full_unstemmed Bag‐1‐mediated HSF1 phosphorylation regulates expression of heat shock proteins in breast cancer cells
title_short Bag‐1‐mediated HSF1 phosphorylation regulates expression of heat shock proteins in breast cancer cells
title_sort bag 1 mediated hsf1 phosphorylation regulates expression of heat shock proteins in breast cancer cells
topic Bag‐1
breast cancer
chaperones
HER2
HSF1
url https://doi.org/10.1002/2211-5463.13843
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AT canozden bag1mediatedhsf1phosphorylationregulatesexpressionofheatshockproteinsinbreastcancercells
AT nisandenizcecan bag1mediatedhsf1phosphorylationregulatesexpressionofheatshockproteinsinbreastcancercells
AT evrenonayucar bag1mediatedhsf1phosphorylationregulatesexpressionofheatshockproteinsinbreastcancercells
AT gizemdinlerdoganay bag1mediatedhsf1phosphorylationregulatesexpressionofheatshockproteinsinbreastcancercells