CORE
CO
nnecting
RE
positories
Services
Services overview
Explore all CORE services
Access to raw data
API
Dataset
FastSync
Content discovery
Recommender
Discovery
OAI identifiers
OAI Resolver
Managing content
Dashboard
Bespoke contracts
Consultancy services
Support us
Support us
Membership
Sponsorship
Research partnership
About
About
About us
Our mission
Team
Blog
FAQs
Contact us
Community governance
Governance
Advisory Board
Board of supporters
Research network
Innovations
Our research
Labs
Regulation of expression of Na+,K+-ATPase in androgen-dependent and androgen-independent prostate cancer
Authors
A Derfoul
A Ruiz
+40 more
A Scheller
A Veronesi
AA McDonough
AM Rose
CB Hensley
CT Coughlin
D Chao
D Charlemagne
F Claessens
GTG Chang
H Sakai
HS Ewart
JB Lingrel
JD Schnidt
JP Middleton
JS Horoszewicz
K Geering
K Kasahara
KA Cooney
LJ Blok
LJ Blok
M Wehling
N Shinohara
P Murtha
P van Dijck
PA Andrews
RTD Oliver
RW Mercer
S Akimoto
SE MacGregor
SE Rundlett
T Bando
T Bando
T Bando
T Ohmori
W Lieberthal
WG Nelson
WHM Peters
WM van Weerden
Z Darzynkiewicz
Publication date
1 January 1999
Publisher
Nature Publishing Group
Doi
View
on
PubMed
Abstract
The β1-subunit of Na+,K+-ATPase was isolated and identified as an androgen down-regulated gene. Expression was observed at high levels in androgen-independent as compared to androgen-dependent (responsive) human prostate cancer cell lines and xenografts when grown in the presence of androgens. Down-regulation of the β1-subunit was initiated at concentrations between 0.01 nM and 0.03 nM of the synthetic androgen R1881 after relatively long incubation times (> 24 h). Using polyclonal antibodies, the concentration of β1-subunit protein, but not of the α1-subunit protein, was markedly reduced in androgen-dependent human prostate cancer cells (LNCaP-FGC) cultured in the presence of androgens. In line with these observations it was found that the protein expression of total Na+,K+-ATPase in the membrane (measured by 3H-ouabain binding) was also markedly decreased. The main function of Na+,K+-ATPase is to maintain sodium and potassium homeostasis in animal cells. The resulting electrochemical gradient is facilitative for transport of several compounds over the cell membrane (for example cisplatin, a chemotherapeutic agent experimentally used in the treatment of hormone-refractory prostate cancer). Here we observed that a ouabain-induced decrease of Na+,K+-ATPase activity in LNCaP-FGC cells results in reduced sensitivity of these cells to cisplatin-treatment. Surprisingly, androgen-induced decrease of Na+,K+-ATPase expression, did not result in significant protection against the chemotherapeutic agent. © 1999 Cancer Research Campaig
Similar works
Full text
Open in the Core reader
Download PDF
Available Versions
Erasmus University Digital Repository
See this paper in CORE
Go to the repository landing page
Download from data provider
oai:repub.eur.nl:66068
Last time updated on 04/08/2016
Crossref
See this paper in CORE
Go to the repository landing page
Download from data provider
Last time updated on 30/01/2019
NARCIS
See this paper in CORE
Go to the repository landing page
Download from data provider
Last time updated on 19/04/2018
EUR Research Repository
See this paper in CORE
Go to the repository landing page
Download from data provider
oai:pure.eur.nl:openaire_cris_...
Last time updated on 29/05/2023
Radboud Repository
See this paper in CORE
Go to the repository landing page
Download from data provider
oai:repository.ubn.ru.nl:2066/...
Last time updated on 11/04/2018
EUR Research Repository
See this paper in CORE
Go to the repository landing page
Download from data provider
oai:pure.eur.nl:publications/4...
Last time updated on 29/05/2023