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PMID: 10547394 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Prostate cancer cell cycle regulators: response to androgen withdrawal and development of androgen independence.

Journal of the National Cancer Institute ·Vol. 91 ·No. 21 ·1999-11-03 ·Pages 1869-76

Agus DB, Cordon-Cardo C, Fox W, Drobnjak M, Koff A, Golde DW, Scher HI

Abstract

Androgen withdrawal is a standard therapy for prostate cancer that results in a decrease in tumor volume and a decline in serum prostate-specific antigen in the majority of patients. To understand the factors associated with regression of prostate cancers after androgen withdrawal, we studied cell cycle regulator changes in the CWR22 human prostate cancer xenograft model. Established tumors in nude athymic BALB/c mice were sampled at various times after androgen withdrawal and after the development of androgen independence. Changes in the expression of cell cycle regulators were categorized into early and mid-to-late events. Early events included a decrease in androgen receptor expression, followed by a short-term increase in expression of the p53 and p21/WAF1 proteins and a marked decrease in the Ki67 proliferative index. Mid-to-late events included progressive and sustained increases in p27 and p16 protein expression, a decrease in retinoblastoma protein expression, and an increase in the transcription factor E2F1. Changes in apoptosis (programmed cell death) were not observed at any time after androgen withdrawal. These data suggest that androgen withdrawal results in a cell stress response, in which increased p53 protein produces a cell cycle arrest, without activation of p53-mediated apoptosis. The proliferative index is further decreased through the action of the cyclin-dependent kinase inhibitors p27 and p16. Androgen-independent sublines emerged 80-400 days after androgen withdrawal, and these sublines had variable growth phenotypes but were associated with mdm2 protein overexpression and increased expression of cyclin D1. These results indicate that tumor regression in this human prostate cancer model is due to cell cycle arrest rather than to apoptosis and that the emergence of androgen independence is associated with a release from cell cycle arrest.

MeSH Terms
Androgens/metabolism Animals Antibodies, Monoclonal Cell Cycle Cyclin-Dependent Kinase Inhibitor p16 Cyclin-Dependent Kinase Inhibitor p21 Cyclins/metabolism Disease Models, Animal Gene Expression Regulation, Neoplastic Humans Immunohistochemistry Ki-67 Antigen/metabolism Male Mice Mice, Inbred BALB C Mice, Nude Microfilament Proteins Muscle Proteins Prostatic Neoplasms/metabolism,pathology Receptors, Androgen/metabolism Time Factors Transplantation, Heterologous Tumor Suppressor Protein p53/metabolism
Chemicals
Androgens Antibodies, Monoclonal CDKN1A protein, human Cdkn1a protein, mouse Cyclin-Dependent Kinase Inhibitor p16 Cyclin-Dependent Kinase Inhibitor p21 Cyclins Ki-67 Antigen Microfilament Proteins Muscle Proteins Receptors, Androgen Tagln protein, mouse Tumor Suppressor Protein p53
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Agus D B
Department of Medicine, Sloan-Kettering Institute, Memorial Sloan-Kettering Cancer Center, New York, NY, USA. [email protected]
Cordon-Cardo C
Fox W
Drobnjak M
Koff A
Golde D W
Scher H I
Article Info
Journal
Journal of the National Cancer Institute
Abbr.
J Natl Cancer Inst
ISSN
0027-8874
Published
1999-11-03
Pages
1869-76
Language
English
Region
United States
NLM ID
7503089
Subset
IM
Grants
NIDDK NIH HHS · DK47650 · United States
NCI NIH HHS · R01CA30388 · United States
NHLBI NIH HHS · R01HL42107 · United States
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