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Dive into the research topics where Margaret S. Beer is active.

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Featured researches published by Margaret S. Beer.


Assay and Drug Development Technologies | 2002

Native and Recombinant Human Edg4 Receptor-Mediated Ca2+ Signalling

Peter B. Simpson; Israel Ramos Villullas; Irina Schurov; Julie Kerby; Rachel Millard; Christine Haldon; Margaret S. Beer; George McAllister

We have developed an assay system suitable for assessment of compound action on the Edg4 subtype of the widely expressed lysophosphatidic acid (LPA)-responsive Edg receptor family. Edg4 was stably overexpressed in the rat hepatoma cell line Rh 7777, and a Ca(2+)-based FLIPR assay developed for measurement of functional responses. In order to investigate the mechanisms linking Edg4 activation to cytosolic Ca(2+) elevation, we have also studied LPA signalling in a human neuroblastoma cell line that endogenously expresses Edg4. LPA responses displayed similar kinetics and potency in the two cell lines. The Ca(2+) signal generated by activation of LPA-sensitive receptors in these cells is mediated primarily by endoplasmic reticulum. However, there is a substantial inhibition of the LPA response by FCCP, indicating that mitochondria also play a key role in the LPA response. Partial inhibition of the response by cyclosporin A could indicate an active Ca(2+) release role for mitochondria in the LPA response. The inositol 1,4,5-triphosphate receptor antagonist 2-aminoethyl diphenyl borate markedly inhibits, but does not abolish, the Ca(2+) response to LPA, suggesting further complexity to the signalling pathways activated by Edg receptors. In comparing Edg signalling in recombinant and native cells, there is a striking overall similarity in receptor expression pattern, agonist potency, and the effect of modulators on the Ca(2+) response. This indicates that the Edg4-overexpressing Rh7777 cell line is a very useful model system for studying receptor pharmacology and signalling mechanisms, and for investigating the Edg4 receptors downstream effects.


Journal of Medicinal Chemistry | 1991

NOVEL 5-HT3 ANTAGONISTS. INDOLE OXADIAZOLES

C. J. Swain; Baker R; Clare O. Kneen; J. Moseley; John Saunders; Seward Em; Stevenson Gi; Margaret S. Beer; Stanton J; K. Watling


Journal of Medicinal Chemistry | 1999

Fluorination of 3-(3-(piperidin-1-yl)propyl)indoles and 3-(3-(piperazin-1-yl)propyl)indoles gives selective human 5-HT1D receptor ligands with improved pharmacokinetic profiles.

Monique B. van Niel; Ian Collins; Margaret S. Beer; Howard B. Broughton; Susan K. F. Cheng; Simon Charles Goodacre; Anne Heald; Karen L Locker; Angus Murray Macleod; Denise Morrison; Christopher Richard Moyes; Desmond O'Connor; Andrew Pike; Michael Rowley; Michael Geoffrey Neil Russell; Balbinder Sohal; Steven Thomas; Hugh M. Verrier; and Alan P. Watt; José L. Castro


Journal of Medicinal Chemistry | 2001

N-Arylsulfonylindole Derivatives as Serotonin 5-HT6 Receptor Ligands

Michael Geoffrey Neil Russell; Robert J. Baker; Laura Barden; Margaret S. Beer; Linda J. Bristow; Howard B. Broughton; Michael R. Knowles; George McAllister; Smita Patel; José L. Castro


Journal of Medicinal Chemistry | 1993

Synthesis and serotonergic activity of 5-(oxadiazolyl)tryptamines: potent agonists for 5-HT1D receptors

Leslie Joseph Harlow Street; Baker R; Jose L. Castro; Mark S. Chambers; Alexander Richard Guiblin; Sarah C. Hobbs; Victor G. Matassa; Austin J. Reeve; Margaret S. Beer


Journal of Medicinal Chemistry | 1995

Synthesis and serotonergic activity of N,N-dimethyl-2-[5-(1,2,4-triazol-1-ylmethyl)-1H-indol-3-yl]ethylamine and analogues: potent agonists for 5-HT1D receptors.

Leslie J. Street; Baker R; Davey Wb; Alexander Richard Guiblin; Richard Alexander Jelley; Austin John Reeve; Routledge H; Francine Sternfeld; and Alan P. Watt; Margaret S. Beer


Journal of Medicinal Chemistry | 1994

Synthesis and biological activity of 3-[2-(dimethylamino)ethyl]-5-[(1,1-dioxo-5-methyl-1,2,5-thiadiazolidin-2-yl)-methyl]-1H-indole and analogues : agonists for the 5-HT1D receptor

José L. Castro; Raymond Baker; Alexander Richard Guiblin; Sarah C. Hobbs; Matthew R. Jenkins; Michael Geoffrey Neil Russell; Margaret S. Beer; Kate Scholey


Journal of Medicinal Chemistry | 1999

1-(3-Cyanobenzylpiperidin-4-yl)-5-methyl-4-phenyl-1,3-dihydroimidazol-2-one : A selective high-affinity antagonist for the human dopamine D4receptor with excellent selectivity over ion channels

Robert W. Carling; Kevin William Moore; Christopher Richard Moyes; Elizabeth A. Jones; Katrine Bonner; Frances Emms; Rosemary Marwood; Shil Patel; Smita Patel; Alan E. Fletcher; Margaret S. Beer; Bindi Sohal; and Andrew Pike; Paul D. Leeson


Journal of Medicinal Chemistry | 1992

Novel 5-HT3 antagonists: indol-3-ylspiro(azabicycloalkane-3,5'(4'H)oxazoles)

Christopher John Swain; Baker R; Clare O. Kneen; Richard H. Herbert; Jonathan D. Moseley; John Saunders; Seward Em; Stevenson Gi; Margaret S. Beer; Stanton J


Journal of Medicinal Chemistry | 1998

Enhancement of Oral Absorption in Selective 5-HT1D Receptor Agonists: Fluorinated 3-[3-(Piperidin-1-yl)propyl]indoles

José L. Castro; Ian Collins; Michael Geoffrey Neil Russell; Alan P. Watt; Bindi Sohal; Denise Rathbone; Margaret S. Beer

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