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Targeting HSF1 disrupts HSP90 chaperone function in chronic lymphocytic leukemia

CLL is a disease characterized by chromosomal deletions, acquired copy number changes and aneuploidy. Recent studies have shown that overexpression of Heat Shock Factor (HSF) 1 in aneuploid tumor cells can overcome deficiencies in heat shock protein (HSP) 90-mediated protein folding and restore prot...

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Autores principales: Ganguly, Siddhartha, Home, Trisha, Yacoub, Abdulraheem, Kambhampati, Suman, Shi, Huidong, Dandawate, Prasad, Padhye, Subhash, Saluja, Ashok K., McGuirk, Joseph, Rao, Rekha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4741638/
https://www.ncbi.nlm.nih.gov/pubmed/26397138
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author Ganguly, Siddhartha
Home, Trisha
Yacoub, Abdulraheem
Kambhampati, Suman
Shi, Huidong
Dandawate, Prasad
Padhye, Subhash
Saluja, Ashok K.
McGuirk, Joseph
Rao, Rekha
author_facet Ganguly, Siddhartha
Home, Trisha
Yacoub, Abdulraheem
Kambhampati, Suman
Shi, Huidong
Dandawate, Prasad
Padhye, Subhash
Saluja, Ashok K.
McGuirk, Joseph
Rao, Rekha
author_sort Ganguly, Siddhartha
collection PubMed
description CLL is a disease characterized by chromosomal deletions, acquired copy number changes and aneuploidy. Recent studies have shown that overexpression of Heat Shock Factor (HSF) 1 in aneuploid tumor cells can overcome deficiencies in heat shock protein (HSP) 90-mediated protein folding and restore protein homeostasis. Interestingly, several independent studies have demonstrated that HSF1 expression and activity also affects the chaperoning of HSP90 kinase clients, although the mechanism underlying this observation is unclear. Here, we determined how HSF1 regulates HSP90 function using CLL as a model system. We report that HSF1 is overexpressed in CLL and treatment with triptolide (a small molecule inhibitor of HSF1) induces apoptosis in cultured and primary CLL B-cells. We demonstrate that knockdown of HSF1 or its inhibition with triptolide results in the reduced association of HSP90 with its kinase co-chaperone cell division cycle 37 (CDC37), leading to the partial depletion of HSP90 client kinases, Bruton's Tyrosine Kinase (BTK), c-RAF and cyclin-dependent kinase 4 (CDK4). Treatment with triptolide or HSF1 knockdown disrupts the cytosolic complex between HSF1, p97, HSP90 and the HSP90 deacetylase- Histone deacetylase 6 (HDAC6). Consequently, HSF1 inhibition results in HSP90 acetylation and abrogation of its chaperone function. Finally, tail vein injection of Mec-1 cells into Rag2−/−IL2Rγc−/− mice followed by treatment with minnelide (a pro-drug of triptolide), reduced leukemia, increased survival and attenuated HSP90-dependent survival signaling in vivo. In conclusion, our study provides a strong rationale to target HSF1 and test the activity of minnelide against human CLL.
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spelling pubmed-47416382016-03-03 Targeting HSF1 disrupts HSP90 chaperone function in chronic lymphocytic leukemia Ganguly, Siddhartha Home, Trisha Yacoub, Abdulraheem Kambhampati, Suman Shi, Huidong Dandawate, Prasad Padhye, Subhash Saluja, Ashok K. McGuirk, Joseph Rao, Rekha Oncotarget Research Paper CLL is a disease characterized by chromosomal deletions, acquired copy number changes and aneuploidy. Recent studies have shown that overexpression of Heat Shock Factor (HSF) 1 in aneuploid tumor cells can overcome deficiencies in heat shock protein (HSP) 90-mediated protein folding and restore protein homeostasis. Interestingly, several independent studies have demonstrated that HSF1 expression and activity also affects the chaperoning of HSP90 kinase clients, although the mechanism underlying this observation is unclear. Here, we determined how HSF1 regulates HSP90 function using CLL as a model system. We report that HSF1 is overexpressed in CLL and treatment with triptolide (a small molecule inhibitor of HSF1) induces apoptosis in cultured and primary CLL B-cells. We demonstrate that knockdown of HSF1 or its inhibition with triptolide results in the reduced association of HSP90 with its kinase co-chaperone cell division cycle 37 (CDC37), leading to the partial depletion of HSP90 client kinases, Bruton's Tyrosine Kinase (BTK), c-RAF and cyclin-dependent kinase 4 (CDK4). Treatment with triptolide or HSF1 knockdown disrupts the cytosolic complex between HSF1, p97, HSP90 and the HSP90 deacetylase- Histone deacetylase 6 (HDAC6). Consequently, HSF1 inhibition results in HSP90 acetylation and abrogation of its chaperone function. Finally, tail vein injection of Mec-1 cells into Rag2−/−IL2Rγc−/− mice followed by treatment with minnelide (a pro-drug of triptolide), reduced leukemia, increased survival and attenuated HSP90-dependent survival signaling in vivo. In conclusion, our study provides a strong rationale to target HSF1 and test the activity of minnelide against human CLL. Impact Journals LLC 2015-09-10 /pmc/articles/PMC4741638/ /pubmed/26397138 Text en Copyright: © 2015 Ganguly et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Ganguly, Siddhartha
Home, Trisha
Yacoub, Abdulraheem
Kambhampati, Suman
Shi, Huidong
Dandawate, Prasad
Padhye, Subhash
Saluja, Ashok K.
McGuirk, Joseph
Rao, Rekha
Targeting HSF1 disrupts HSP90 chaperone function in chronic lymphocytic leukemia
title Targeting HSF1 disrupts HSP90 chaperone function in chronic lymphocytic leukemia
title_full Targeting HSF1 disrupts HSP90 chaperone function in chronic lymphocytic leukemia
title_fullStr Targeting HSF1 disrupts HSP90 chaperone function in chronic lymphocytic leukemia
title_full_unstemmed Targeting HSF1 disrupts HSP90 chaperone function in chronic lymphocytic leukemia
title_short Targeting HSF1 disrupts HSP90 chaperone function in chronic lymphocytic leukemia
title_sort targeting hsf1 disrupts hsp90 chaperone function in chronic lymphocytic leukemia
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4741638/
https://www.ncbi.nlm.nih.gov/pubmed/26397138
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