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Evolutionarily conserved dual lysine motif determines the non-chaperone function of secreted Hsp90alpha in tumour progression

Both intracellular and extracellular heat shock protein-90 (Hsp90) family proteins (α and β) have been shown to support tumour progression. The tumour-supporting activity of the intracellular Hsp90 is attributed to their N-terminal ATPase-driven chaperone function. What molecular entity determines t...

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Autores principales: Zou, M, Bhatia, A, Dong, H, Jayaprakash, P, Guo, J, Sahu, D, Hou, Y, Tsen, F, Tong, C, O'Brien, K, Situ, A J, Schmidt, T, Chen, M, Ying, Q, Ulmer, T S, Woodley, D T, Li, W
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5386837/
https://www.ncbi.nlm.nih.gov/pubmed/27721406
http://dx.doi.org/10.1038/onc.2016.375
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author Zou, M
Bhatia, A
Dong, H
Jayaprakash, P
Guo, J
Sahu, D
Hou, Y
Tsen, F
Tong, C
O'Brien, K
Situ, A J
Schmidt, T
Chen, M
Ying, Q
Ulmer, T S
Woodley, D T
Li, W
author_facet Zou, M
Bhatia, A
Dong, H
Jayaprakash, P
Guo, J
Sahu, D
Hou, Y
Tsen, F
Tong, C
O'Brien, K
Situ, A J
Schmidt, T
Chen, M
Ying, Q
Ulmer, T S
Woodley, D T
Li, W
author_sort Zou, M
collection PubMed
description Both intracellular and extracellular heat shock protein-90 (Hsp90) family proteins (α and β) have been shown to support tumour progression. The tumour-supporting activity of the intracellular Hsp90 is attributed to their N-terminal ATPase-driven chaperone function. What molecular entity determines the extracellular function of secreted Hsp90 and the distinction between Hsp90α and Hsp90β was unclear. Here we demonstrate that CRISPR/Case9 knocking out Hsp90α nullifies tumour cells' ability to migrate, invade and metastasize without affecting the cell survival and growth. Knocking out Hsp90β leads to tumour cell death. Extracellular supplementation with recombinant Hsp90α, but not Hsp90β, protein recovers tumourigenicity of the Hsp90α-knockout cells. Sequential mutagenesis identifies two evolutionarily conserved lysine residues, lys-270 and lys-277, in the Hsp90α subfamily that determine the extracellular Hsp90α function. Hsp90β subfamily lacks the dual lysine motif and the extracellular function. Substitutions of gly-262 and thr-269 in Hsp90β with lysines convert Hsp90β to a Hsp90α-like protein. Newly constructed monoclonal antibody, 1G6-D7, against the dual lysine region of secreted Hsp90α inhibits both de novo tumour formation and expansion of already formed tumours in mice. This study suggests an alternative therapeutic approach to target Hsp90 in cancer, that is, the tumour-secreted Hsp90α, instead of the intracellular Hsp90α and Hsp90β.
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spelling pubmed-53868372017-04-14 Evolutionarily conserved dual lysine motif determines the non-chaperone function of secreted Hsp90alpha in tumour progression Zou, M Bhatia, A Dong, H Jayaprakash, P Guo, J Sahu, D Hou, Y Tsen, F Tong, C O'Brien, K Situ, A J Schmidt, T Chen, M Ying, Q Ulmer, T S Woodley, D T Li, W Oncogene Original Article Both intracellular and extracellular heat shock protein-90 (Hsp90) family proteins (α and β) have been shown to support tumour progression. The tumour-supporting activity of the intracellular Hsp90 is attributed to their N-terminal ATPase-driven chaperone function. What molecular entity determines the extracellular function of secreted Hsp90 and the distinction between Hsp90α and Hsp90β was unclear. Here we demonstrate that CRISPR/Case9 knocking out Hsp90α nullifies tumour cells' ability to migrate, invade and metastasize without affecting the cell survival and growth. Knocking out Hsp90β leads to tumour cell death. Extracellular supplementation with recombinant Hsp90α, but not Hsp90β, protein recovers tumourigenicity of the Hsp90α-knockout cells. Sequential mutagenesis identifies two evolutionarily conserved lysine residues, lys-270 and lys-277, in the Hsp90α subfamily that determine the extracellular Hsp90α function. Hsp90β subfamily lacks the dual lysine motif and the extracellular function. Substitutions of gly-262 and thr-269 in Hsp90β with lysines convert Hsp90β to a Hsp90α-like protein. Newly constructed monoclonal antibody, 1G6-D7, against the dual lysine region of secreted Hsp90α inhibits both de novo tumour formation and expansion of already formed tumours in mice. This study suggests an alternative therapeutic approach to target Hsp90 in cancer, that is, the tumour-secreted Hsp90α, instead of the intracellular Hsp90α and Hsp90β. Nature Publishing Group 2017-04 2016-10-10 /pmc/articles/PMC5386837/ /pubmed/27721406 http://dx.doi.org/10.1038/onc.2016.375 Text en Copyright © 2017 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/4.0/
spellingShingle Original Article
Zou, M
Bhatia, A
Dong, H
Jayaprakash, P
Guo, J
Sahu, D
Hou, Y
Tsen, F
Tong, C
O'Brien, K
Situ, A J
Schmidt, T
Chen, M
Ying, Q
Ulmer, T S
Woodley, D T
Li, W
Evolutionarily conserved dual lysine motif determines the non-chaperone function of secreted Hsp90alpha in tumour progression
title Evolutionarily conserved dual lysine motif determines the non-chaperone function of secreted Hsp90alpha in tumour progression
title_full Evolutionarily conserved dual lysine motif determines the non-chaperone function of secreted Hsp90alpha in tumour progression
title_fullStr Evolutionarily conserved dual lysine motif determines the non-chaperone function of secreted Hsp90alpha in tumour progression
title_full_unstemmed Evolutionarily conserved dual lysine motif determines the non-chaperone function of secreted Hsp90alpha in tumour progression
title_short Evolutionarily conserved dual lysine motif determines the non-chaperone function of secreted Hsp90alpha in tumour progression
title_sort evolutionarily conserved dual lysine motif determines the non-chaperone function of secreted hsp90alpha in tumour progression
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5386837/
https://www.ncbi.nlm.nih.gov/pubmed/27721406
http://dx.doi.org/10.1038/onc.2016.375
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