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PMID: 23958191 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Validation Study

Optimisation and validation of a high throughput screening compatible assay to identify inhibitors of the plasma membrane calcium ATPase pump--a novel therapeutic target for contraception and malaria.

Mohamed TM, Zakeri SA, Baudoin F, Wolf M, Oceandy D, Cartwright EJ, Gul S, Neyses L

Abstract

ATPases, which constitute a major category of ion transporters in the human body, have a variety of significant biological and pathological roles. However, the lack of high throughput assays for ATPases has significantly limited drug discovery in this area. We have recently found that the genetic deletion of the ATP dependent calcium pump PMCA4 (plasma membrane calcium/calmodulin dependent ATPase, isoform 4) results in infertility in male mice due to a selective defect in sperm motility. In addition, recent discoveries in humans have indicated that a single nucleotide polymorphism (SNP) in the PMCA4 gene determines the susceptibility towards malaria plasmodium infection. Therefore, there is an urgent need to develop specific PMCA4 inhibitors. In the current study, we aim to optimise and validate a high throughput screening compatible assay using recombinantly expressed PMCA4 and the HTRF® Transcreener® ADP (TR-FRET) assay to screen a drug library. PMCA4 membrane microsomes were prepared from HEK293 cells overexpressing PMCA4. Western blot quantification revealed nearly nine-fold increased expression of PMCA4 compared to LacZ (control virus)-infected cells. Maximal PMCA4 microsomal activity was achieved in the TR-FRET assay with 15ng/μl microsomal concentration, 30-minute pre-incubation with compounds at 37°C, and calcium buffering with 1mM EGTA providing 1μM free-calcium. Finally a dose-response curve for carboxyeosin (a non-specific PMCA inhibitor) under optimised conditions showed significant PMCA4 inhibition. Upon confirmation that the assay was suitable for high-throughput screening, we have screened the ChemBioNet small molecule library (~21,000 compounds) against the PMCA4 assay to identify those that are its apparent inhibitors. This screening yielded 1,494 primary hits. We have optimised the HTRF® Transcreener® ADP assay for high-throughput screening to identify PMCA4 inhibitors. The output of the screening campaign has provided preliminary chemical starting points that could be further developed to specific PMCA4 inhibitors for non-hormonal contraception or anti-malaria therapy.

MeSH Terms
Adenosine Diphosphate/metabolism Adenosine Triphosphate/metabolism Contraception Enzyme Inhibitors/pharmacology HEK293 Cells High-Throughput Screening Assays Humans Malaria/drug therapy,metabolism Microsomes/metabolism Plasma Membrane Calcium-Transporting ATPases/antagonists & inhibitors,metabolism
Chemicals
Enzyme Inhibitors Adenosine Diphosphate Adenosine Triphosphate Plasma Membrane Calcium-Transporting ATPases
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Mohamed Tamer M A
Institute of Cardiovascular Sciences, Manchester Academic Health Sciences Centre, University of Manchester, Manchester M13 9PT, UK. [email protected]
Zakeri Simon A
Baudoin Florence
Wolf Markus
Oceandy Delvac
Cartwright Elizabeth J
Gul Sheraz
Neyses Ludwig
Article Info
Journal
Journal of pharmacy & pharmaceutical sciences : a publication of the Canadian Society for Pharmaceutical Sciences, Societe canadienne des sciences pharmaceutiques
Abbr.
J Pharm Pharm Sci
ISSN
1482-1826
Published
2013-00-00
Pages
217-30
Language
English
Region
Canada
NLM ID
9807281
Subset
IM
Grants
Medical Research Council · G1002082 · United Kingdom
Medical Research Council · MC_PC_12018 · United Kingdom
British Heart Foundation · PG/13/12/30017 · United Kingdom
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