Literature DB >> 11108794

The effects of phenothiazines and other calmodulin antagonists on the sarcoplasmic and endoplasmic reticulum Ca(2+) pumps.

S Z Khan1, C L Longland, F Michelangeli.   

Abstract

The effects of a number of phenothiazines and other calmodulin antagonists on the Ca(2+)-ATPase activity of sarcoplasmic reticulum (SR) and endoplasmic reticulum (ER) were investigated. The drugs used in this study were trifluoperazine, calmidazolium, fluphenazine, chlorpromazine, W-7, and calmodulin-binding peptide. Our results showed that calmidazolium and calmodulin-binding peptide were the most potent inhibitors of skeletal muscle SR Ca(2+)-ATPase activity (isoform SERCA 1) (IC(50) values of 0.5 and 7 microM, respectively), while W-7 was the least potent inhibitor (IC(50), 125 microM). All of the antagonists had little effect on the cerebellar ER Ca(2+)-ATPase activity (isoform SERCA 2b), except for trifluoperazine, which had a biphasic effect, causing stimulation at low concentrations and inhibition at higher concentrations. Our results suggest that the effects of these calmodulin antagonists are independent of calmodulin and that they inhibit the Ca(2+)-ATPase in an isoform-specific manner. It was found that these antagonists inhibit the skeletal muscle isoform of the Ca(2+) pump by altering the Ca(2+) affinity and the associated Ca(2+)-binding steps, as well as possibly stabilising the E1 conformational state of the enzyme.

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Year:  2000        PMID: 11108794     DOI: 10.1016/s0006-2952(00)00505-0

Source DB:  PubMed          Journal:  Biochem Pharmacol        ISSN: 0006-2952            Impact factor:   5.858


  13 in total

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Authors:  Dominik Schuler; Carolin Lübker; Gerald H Lushington; Wei-Jen Tang; Yuequan Shen; Mark Richter; Roland Seifert
Journal:  Biochem Pharmacol       Date:  2012-01-13       Impact factor: 5.858

2.  Chlorpromazine and dimethyl sulfoxide modulate the catalytic activity of the plasma membrane Ca2+-ATPase from human erythrocyte.

Authors:  Fernando Plenge-Tellechea; Carlos A Domínguez-Solís; Ángel G Díaz-Sánchez; David Meléndez-Martínez; Javier Vargas-Medrano; Jorge A Sierra-Fonseca
Journal:  J Bioenerg Biomembr       Date:  2018-01-08       Impact factor: 2.945

3.  Trifluoperazine protects brain plasma membrane Ca(2+)-ATPase from oxidative damaging.

Authors:  Patricia Souza dos Santos; Dayvison Francis Saraiva; Danielly Cristiny Ferraz da Costa; Helena Maria Scofano; Paulo Cesar de Carvalho-Alves
Journal:  Exp Brain Res       Date:  2007-03       Impact factor: 1.972

4.  The Impact of the Antipsychotic Medication Chlorpromazine on Cytotoxicity through Ca2+ Signaling Pathway in Glial Cell Models.

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Journal:  Neurotox Res       Date:  2022-04-19       Impact factor: 3.911

5.  Calmidazolium and arachidonate activate a calcium entry pathway that is distinct from store-operated calcium influx in HeLa cells.

Authors:  Claire M Peppiatt; Anthony M Holmes; Jeong T Seo; Martin D Bootman; Tony J Collins; Fraser McDonald; H Llewelyn Roderick
Journal:  Biochem J       Date:  2004-08-01       Impact factor: 3.857

6.  Antifungal activity of tamoxifen: in vitro and in vivo activities and mechanistic characterization.

Authors:  Kristy Dolan; Sara Montgomery; Bradley Buchheit; Louis Didone; Melanie Wellington; Damian J Krysan
Journal:  Antimicrob Agents Chemother       Date:  2009-06-01       Impact factor: 5.191

7.  Attenuation of calmodulin regulation evokes Ca2+ oscillations: evidence for the involvement of intracellular arachidonate-activated channels and connexons.

Authors:  Egor A Turovsky; Valery P Zinchenko; Nikolai P Kaimachnikov
Journal:  Mol Cell Biochem       Date:  2019-02-11       Impact factor: 3.396

8.  Effects of 39 Compounds on Calmodulin-Regulated Adenylyl Cyclases AC1 and Bacillus anthracis Edema Factor.

Authors:  Carolin Lübker; Roland Seifert
Journal:  PLoS One       Date:  2015-05-06       Impact factor: 3.240

9.  Ca²+/calmodulin-dependent protein kinase II (CaMKII) activity and sinoatrial nodal pacemaker cell energetics.

Authors:  Yael Yaniv; Harold A Spurgeon; Bruce D Ziman; Edward G Lakatta
Journal:  PLoS One       Date:  2013-02-25       Impact factor: 3.240

10.  Endoplasmic reticulum membrane reorganization is regulated by ionic homeostasis.

Authors:  Shankar Varadarajan; Kayoko Tanaka; Joshua L Smalley; Edward T W Bampton; Maurizio Pellecchia; David Dinsdale; Gary B Willars; Gerald M Cohen
Journal:  PLoS One       Date:  2013-02-15       Impact factor: 3.240

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