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PMID: 10919672 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Inhibition of Hsp90 function by ansamycins causes retinoblastoma gene product-dependent G1 arrest.

Cancer research ·Vol. 60 ·No. 14 ·2000-07-15 ·Pages 3940-6

Srethapakdi M, Liu F, Tavorath R, Rosen N

Abstract

The ansamycin antibiotics, herbimycin A (HA) and geldanamycin (GM), bind to a conserved pocket in heat shock protein 90 (Hsp90) and alter the function of this chaperone protein. Occupancy of this pocket results in the degradation of a subset of signaling molecules. These include proteins known to associate with Hsp90, e.g., the steroid receptors and Raf, as well as certain transmembrane tyrosine kinases, such as the ErbB receptor family. In a variety of tumor cell lines, treatment with HA potently inhibited cellular proliferation by inducing G1 arrest. This arrest was accompanied by hypophosphorylation of the retinoblastoma gene product (RB) and rapid down-regulation of cyclin D- and E-associated kinase activities. Inhibition of kinase activity was found to result from loss in expression of cyclins D1, D3, and E, as well as the associated cyclin-dependent kinases, cyclin-dependent kinase 4 and cyclin-dependent kinase 6. In addition, HA treatment also caused a late induction of p27(Kip1) protein. The loss of cyclin D preceded the other effects of HA, suggesting that it might be the primary cause of G1 arrest. To determine whether the effects of HA are mediated by selective inhibition of the cyclin D-RB pathway, HA was added to tumor cell lines lacking functional RB. HA treatment of Rb-negative tumor cell lines failed to elicit a G1 arrest. In addition, after release from synchronization with nocodazole, Rb-negative but not Rb-positive cell lines were able to progress through G1 into S phase in the presence of HA. Together, these findings suggest that induction of G1 arrest by HA results from down-regulation of cyclin D expression and its associated kinase activity. Furthermore, these findings imply that Hsp90 selectively regulates signaling pathways upstream of RB.

MeSH Terms
Antibiotics, Antineoplastic/pharmacology Benzoquinones Blotting, Western Breast Neoplasms/metabolism Cell Cycle Proteins Cell Division/drug effects Colonic Neoplasms/metabolism Cyclin A/metabolism Cyclin D1/metabolism Cyclin D3 Cyclin E/metabolism Cyclin-Dependent Kinase 4 Cyclin-Dependent Kinase 6 Cyclin-Dependent Kinase Inhibitor p27 Cyclin-Dependent Kinases/metabolism Cyclins/metabolism Down-Regulation/drug effects Flow Cytometry G1 Phase/drug effects HSP90 Heat-Shock Proteins/antagonists & inhibitors Humans Lactams, Macrocyclic Microtubule-Associated Proteins/metabolism Mutation Phosphorylation/drug effects Protein Serine-Threonine Kinases/metabolism Proto-Oncogene Proteins Quinones/pharmacology Retinoblastoma Protein/genetics,metabolism Rifabutin/analogs & derivatives Signal Transduction/drug effects Time Factors Tumor Cells, Cultured Tumor Suppressor Proteins
Chemicals
Antibiotics, Antineoplastic Benzoquinones CCND3 protein, human Cell Cycle Proteins Cyclin A Cyclin D3 Cyclin E Cyclins HSP90 Heat-Shock Proteins Lactams, Macrocyclic Microtubule-Associated Proteins Proto-Oncogene Proteins Quinones Retinoblastoma Protein Tumor Suppressor Proteins Cyclin D1 Cyclin-Dependent Kinase Inhibitor p27 Rifabutin herbimycin Protein Serine-Threonine Kinases CDK4 protein, human CDK6 protein, human Cyclin-Dependent Kinase 4 Cyclin-Dependent Kinase 6 Cyclin-Dependent Kinases
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Srethapakdi M
Program in Molecular Biology, Memorial Sloan-Kettering Cancer Center, New York, New York 10021, USA.
Liu F
Tavorath R
Rosen N
Article Info
Journal
Cancer research
Abbr.
Cancer Res
ISSN
0008-5472
Published
2000-07-15
Pages
3940-6
Language
English
Region
United States
NLM ID
2984705R
Subset
IM
Grants
NCI NIH HHS · P50CA68425-02 · United States
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