Literature DB >> 18292195

Androgen receptor is causally involved in the homeostasis of the human prostate endothelial cell.

Alejandro Godoy1, Anica Watts, Paula Sotomayor, Viviana P Montecinos, Wendy J Huss, Sergio A Onate, Gary J Smith.   

Abstract

Androgen deprivation causes a reduction of blood flow in the prostate gland that precedes temporally apoptosis of the epithelium. The acute response of prostate endothelial cells to androgen deprivation suggested they represent a primary target for androgen. However, rat prostate endothelial cells were reported not to express androgen receptor (AR), and the role of the androgen axis in human prostate endothelial cell (HPEC) homeostasis was poorly characterized. In this study AR expression was detected in HPEC in vivo in clinical specimens of benign prostate and prostate cancer, and AR function as a transcription factor was demonstrated in HPEC in primary xenografts of human benign prostate tissue transplanted into severe combined immunodeficient mice by iv administration of adenoviral mouse mammary tumor virus-driven luciferase expression vector. AR expression and functionality were maintained in vitro in primary cultures of HPEC that coexpressed CD31, CD34, von Willebrand factor, intercellular adhesion molecule, vascular endothelial growth factor receptor 1, and vascular endothelial growth factor receptor 2 but did not express prostate-specific antigen. AR expression in primary cultures of HPEC isolated from surgical specimens of benign prostate was validated using RT-PCR, cDNA sequencing, immunocytochemistry, and Western blot analyses. Scatchard analyses demonstrated a single ligand-binding site for R1881 in primary cultures of HPEC, with dissociation constant of 0.25 nm, and AR-mediated transcriptional activity was demonstrated using adenoviral mouse mammary tumor virus-driven luciferase reporters. Dihydrotestosterone increased proliferation in primary cultures of HPEC in a dose-dependent manner without modulating endothelial tube formation in Matrigel (BD Biosciences, Bedford, MA). Therefore, HPECs express functional AR, and androgen plays a direct role in modulating HPEC biology.

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Year:  2008        PMID: 18292195      PMCID: PMC2408806          DOI: 10.1210/en.2007-1078

Source DB:  PubMed          Journal:  Endocrinology        ISSN: 0013-7227            Impact factor:   4.736


  58 in total

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Review 3.  Is tissue mass regulated by vascular endothelial cells? Prostate as the first evidence.

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Journal:  Endocrinology       Date:  1998-02       Impact factor: 4.736

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Journal:  Nature       Date:  1985 Feb 21-27       Impact factor: 49.962

5.  Regulation of Apoptosis in the Prostate Gland by Androgenic Steroids.

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Journal:  Trends Endocrinol Metab       Date:  1999-03       Impact factor: 12.015

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Journal:  Endocrinology       Date:  1996-03       Impact factor: 4.736

7.  Differential subcellular distribution of glucose transporters GLUT1-6 and GLUT9 in human cancer: ultrastructural localization of GLUT1 and GLUT5 in breast tumor tissues.

Authors:  Alejandro Godoy; Viviana Ulloa; Federico Rodríguez; Karin Reinicke; Alejandro J Yañez; María de los Angeles García; Rodolfo A Medina; Mónica Carrasco; Sofía Barberis; Tamara Castro; Fernando Martínez; Ximena Koch; Juan Carlos Vera; María Teresa Poblete; Carlos D Figueroa; Bruno Peruzzo; Fernando Pérez; Francisco Nualart
Journal:  J Cell Physiol       Date:  2006-06       Impact factor: 6.384

8.  Androgen and estrogen receptors in the human corpus cavernosum penis: immunohistochemical and cell culture results.

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Journal:  J Invest Dermatol       Date:  1991-08       Impact factor: 8.551

10.  Immunolocalization of von Willebrand protein in Weibel-Palade bodies of human endothelial cells.

Authors:  D D Wagner; J B Olmsted; V J Marder
Journal:  J Cell Biol       Date:  1982-10       Impact factor: 10.539

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  24 in total

Review 1.  Androgen receptor in human endothelial cells.

Authors:  Verónica Torres-Estay; Daniela V Carreño; Ignacio F San Francisco; Paula Sotomayor; Alejandro S Godoy; Gary J Smith
Journal:  J Endocrinol       Date:  2015-01-06       Impact factor: 4.286

2.  Vascular responses to radiotherapy and androgen-deprivation therapy in experimental prostate cancer.

Authors:  Kathrine Røe; Lars Tg Mikalsen; Albert J van der Kogel; Johan Bussink; Heidi Lyng; Anne H Ree; Laure Marignol; Dag R Olsen
Journal:  Radiat Oncol       Date:  2012-05-23       Impact factor: 3.481

3.  Endostatin inhibits androgen-independent prostate cancer growth by suppressing nuclear receptor-mediated oxidative stress.

Authors:  Joo Hyoung Lee; Minsung Kang; Hong Wang; Gurudatta Naik; James A Mobley; Guru Sonpavde; W Timothy Garvey; Victor M Darley-Usmar; Selvarangan Ponnazhagan
Journal:  FASEB J       Date:  2017-01-09       Impact factor: 5.191

4.  Enzymatic activity of free-prostate-specific antigen (f-PSA) is not required for some of its physiological activities.

Authors:  Kailash C Chadha; Bindukumar B Nair; Srikant Chakravarthi; Rita Zhou; Alejandro Godoy; James L Mohler; Ravikumar Aalinkeel; Stanley A Schwartz; Gary J Smith
Journal:  Prostate       Date:  2011-03-28       Impact factor: 4.104

5.  Peroxiredoxin 1 controls prostate cancer growth through Toll-like receptor 4-dependent regulation of tumor vasculature.

Authors:  Jonah R Riddell; Wiam Bshara; Michael T Moser; Joseph A Spernyak; Barbara A Foster; Sandra O Gollnick
Journal:  Cancer Res       Date:  2011-02-22       Impact factor: 12.701

Review 6.  Cellular Constituents of the Prostate Stroma: Key Contributors to Prostate Cancer Progression and Therapy Resistance.

Authors:  Christine Levesque; Peter S Nelson
Journal:  Cold Spring Harb Perspect Med       Date:  2018-08-01       Impact factor: 6.915

Review 7.  Role of androgen and vitamin D receptors in endothelial cells from benign and malignant human prostate.

Authors:  Alejandro S Godoy; Ivy Chung; Viviana P Montecinos; Ralph Buttyan; Candace S Johnson; Gary J Smith
Journal:  Am J Physiol Endocrinol Metab       Date:  2013-04-02       Impact factor: 4.310

8.  5α-reductase type 3 expression in human benign and malignant tissues: a comparative analysis during prostate cancer progression.

Authors:  Alejandro Godoy; Elzbieta Kawinski; Yun Li; Daizo Oka; Borislav Alexiev; Faris Azzouni; Mark A Titus; James L Mohler
Journal:  Prostate       Date:  2010-12-28       Impact factor: 4.104

9.  Endothelial cells enhance prostate cancer metastasis via IL-6→androgen receptor→TGF-β→MMP-9 signals.

Authors:  Xiaohai Wang; Soo Ok Lee; Shujie Xia; Qi Jiang; Jie Luo; Lei Li; Shuyuan Yeh; Chawnshang Chang
Journal:  Mol Cancer Ther       Date:  2013-03-27       Impact factor: 6.261

10.  ABCG2-mediated DyeCycle Violet efflux defined side population in benign and malignant prostate.

Authors:  Grinu Mathew; Earl A Timm; Paula Sotomayor; Alejandro Godoy; Viviana P Montecinos; Gary J Smith; Wendy J Huss
Journal:  Cell Cycle       Date:  2009-04-30       Impact factor: 4.534

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