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Casein kinase 2 phosphorylation of Hsp90 threonine 22 modulates chaperone function and drug sensitivity
The molecular chaperone Heat Shock Protein 90 (Hsp90) is essential for the function of various oncoproteins that are vital components of multiple signaling networks regulating cancer cell proliferation, survival, and metastasis. Hsp90 chaperone function is coupled to its ATPase activity, which can b...
Autores principales: | , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Impact Journals LLC
2011
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3248188/ https://www.ncbi.nlm.nih.gov/pubmed/21576760 |
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author | Mollapour, Mehdi Tsutsumi, Shinji Kim, Yeong Sang Trepel, Jane Neckers, Len |
author_facet | Mollapour, Mehdi Tsutsumi, Shinji Kim, Yeong Sang Trepel, Jane Neckers, Len |
author_sort | Mollapour, Mehdi |
collection | PubMed |
description | The molecular chaperone Heat Shock Protein 90 (Hsp90) is essential for the function of various oncoproteins that are vital components of multiple signaling networks regulating cancer cell proliferation, survival, and metastasis. Hsp90 chaperone function is coupled to its ATPase activity, which can be inhibited by natural products such as the ansamycin geldanamycin (GA) and the resorcinol radicicol (RD). These compounds have served as templates for development of numerous natural product Hsp90 inhibitors. More recently, second generation, fully synthetic Hsp90 inhibitors, based on a variety of chemical scaffolds, have also been synthesized. Together, 18 natural product and synthetic Hsp90 inhibitors have entered clinical trial in cancer patients. To successfully develop Hsp90 inhibitors for oncology indications it is important to understand the factors that influence the susceptibility of Hsp90 to these drugs in vivo. We recently reported that Casein Kinase 2 phosphorylates a conserved threonine residue (T22) in helix-1 of the yeast Hsp90 N-domain both in vitro and in vivo. Phosphorylation of this residue reduces ATPase activity and affects Hsp90 chaperone function. Here, we present additional data demonstrating that ATP binding but not N-domain dimerization is a prerequisite for T22 phosphorylation. We also provide evidence that T22 is an important determinant of Hsp90 inhibitor sensitivity in yeast and we show that T22 phosphorylation status contributes to drug sensitivity in vivo. |
format | Online Article Text |
id | pubmed-3248188 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2011 |
publisher | Impact Journals LLC |
record_format | MEDLINE/PubMed |
spelling | pubmed-32481882012-01-18 Casein kinase 2 phosphorylation of Hsp90 threonine 22 modulates chaperone function and drug sensitivity Mollapour, Mehdi Tsutsumi, Shinji Kim, Yeong Sang Trepel, Jane Neckers, Len Oncotarget Research Perspectives The molecular chaperone Heat Shock Protein 90 (Hsp90) is essential for the function of various oncoproteins that are vital components of multiple signaling networks regulating cancer cell proliferation, survival, and metastasis. Hsp90 chaperone function is coupled to its ATPase activity, which can be inhibited by natural products such as the ansamycin geldanamycin (GA) and the resorcinol radicicol (RD). These compounds have served as templates for development of numerous natural product Hsp90 inhibitors. More recently, second generation, fully synthetic Hsp90 inhibitors, based on a variety of chemical scaffolds, have also been synthesized. Together, 18 natural product and synthetic Hsp90 inhibitors have entered clinical trial in cancer patients. To successfully develop Hsp90 inhibitors for oncology indications it is important to understand the factors that influence the susceptibility of Hsp90 to these drugs in vivo. We recently reported that Casein Kinase 2 phosphorylates a conserved threonine residue (T22) in helix-1 of the yeast Hsp90 N-domain both in vitro and in vivo. Phosphorylation of this residue reduces ATPase activity and affects Hsp90 chaperone function. Here, we present additional data demonstrating that ATP binding but not N-domain dimerization is a prerequisite for T22 phosphorylation. We also provide evidence that T22 is an important determinant of Hsp90 inhibitor sensitivity in yeast and we show that T22 phosphorylation status contributes to drug sensitivity in vivo. Impact Journals LLC 2011-05-14 /pmc/articles/PMC3248188/ /pubmed/21576760 Text en Copyright: © 2011 Mollapour 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 Perspectives Mollapour, Mehdi Tsutsumi, Shinji Kim, Yeong Sang Trepel, Jane Neckers, Len Casein kinase 2 phosphorylation of Hsp90 threonine 22 modulates chaperone function and drug sensitivity |
title | Casein kinase 2 phosphorylation of Hsp90 threonine 22 modulates chaperone function and drug sensitivity |
title_full | Casein kinase 2 phosphorylation of Hsp90 threonine 22 modulates chaperone function and drug sensitivity |
title_fullStr | Casein kinase 2 phosphorylation of Hsp90 threonine 22 modulates chaperone function and drug sensitivity |
title_full_unstemmed | Casein kinase 2 phosphorylation of Hsp90 threonine 22 modulates chaperone function and drug sensitivity |
title_short | Casein kinase 2 phosphorylation of Hsp90 threonine 22 modulates chaperone function and drug sensitivity |
title_sort | casein kinase 2 phosphorylation of hsp90 threonine 22 modulates chaperone function and drug sensitivity |
topic | Research Perspectives |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3248188/ https://www.ncbi.nlm.nih.gov/pubmed/21576760 |
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