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1.
J Med Chem ; 61(18): 8136-8154, 2018 09 27.
Article de Anglais | MEDLINE | ID: mdl-30048589

RÉSUMÉ

The orphan receptor GPR17 may be a novel drug target for inflammatory diseases. 3-(2-Carboxyethyl)-4,6-dichloro-1 H-indole-2-carboxylic acid (MDL29,951, 1) was previously identified as a moderately potent GPR17 agonist. In the present study, we investigated the structure-activity relationships (SARs) of 1. Substitution of the indole 1-, 5-, or 7-position was detrimental. Only small substituents were tolerated in the 4-position while the 6-position accommodated large lipophilic residues. Among the most potent compounds were 3-(2-carboxyethyl)-1 H-indole-2-carboxylic acid derivatives containing the following substituents: 6-phenoxy (26, PSB-1737, EC50 270 nM), 4-fluoro-6-bromo (33, PSB-18422, EC50 27.9 nM), 4-fluoro-6-iodo (35, PSB-18484, EC50 32.1 nM), and 4-chloro-6-hexyloxy (43, PSB-1767, EC50 67.0 nM). (3-(2-Carboxyethyl)-6-hexyloxy-1 H-indole-2-carboxylic acid (39, PSB-17183, EC50 115 nM) behaved as a partial agonist. Selected potent compounds tested at human P2Y receptor subtypes showed high selectivity for GPR17. Docking into a homology model of the human GPR17 and molecular dynamic simulation studies rationalized the observed SARs.


Sujet(s)
Antinéoplasiques/composition chimique , Antinéoplasiques/pharmacologie , Astrocytome/traitement médicamenteux , Indoles/composition chimique , Récepteurs couplés aux protéines G/agonistes , Animaux , Astrocytome/métabolisme , Astrocytome/anatomopathologie , Calcium/métabolisme , Humains , Modèles moléculaires , Structure moléculaire , Conformation des protéines , Rats , Relation structure-activité , Cellules cancéreuses en culture
2.
Sci Signal ; 6(298): ra93, 2013 Oct 22.
Article de Anglais | MEDLINE | ID: mdl-24150254

RÉSUMÉ

Replacement of the lost myelin sheath is a therapeutic goal for treating demyelinating diseases of the central nervous system (CNS), such as multiple sclerosis (MS). The G protein (heterotrimeric guanine nucleotide-binding protein)-coupled receptor (GPCR) GPR17, which is phylogenetically closely related to receptors of the "purinergic cluster," has emerged as a modulator of CNS myelination. However, whether GPR17-mediated signaling positively or negatively regulates this critical process is unresolved. We identified a small-molecule agonist, MDL29,951, that selectively activated GPR17 even in a complex environment of endogenous purinergic receptors in primary oligodendrocytes. MDL29,951-stimulated GPR17 engaged the entire set of intracellular adaptor proteins for GPCRs: G proteins of the Gα(i), Gα(s), and Gα(q) subfamily, as well as ß-arrestins. This was visualized as alterations in the concentrations of cyclic adenosine monophosphate and inositol phosphate, increased Ca²âº flux, phosphorylation of extracellular signal-regulated kinases 1 and 2 (ERK1/2), as well as multifeatured cell activation recorded with label-free dynamic mass redistribution and impedance biosensors. MDL29,951 inhibited the maturation of primary oligodendrocytes from heterozygous but not GPR17 knockout mice in culture, as well as in cerebellar slices from 4-day-old wild-type mice. Because GPCRs are attractive targets for therapeutic intervention, inhibiting GPR17 emerges as therapeutic strategy to relieve the oligodendrocyte maturation block and promote myelin repair in MS.


Sujet(s)
Récepteurs couplés aux protéines G/agonistes , Transduction du signal/effets des médicaments et des substances chimiques , Bibliothèques de petites molécules/pharmacologie , Animaux , Arrestines/métabolisme , Cellules CHO , Cellules COS , Lignée cellulaire , Lignée cellulaire tumorale , Cellules cultivées , 4H-1-Benzopyran-4-ones/pharmacologie , Cricetinae , Cricetulus , Cellules HEK293 , Humains , Immunohistochimie , Indoles/composition chimique , Indoles/pharmacologie , Souris , Souris knockout , Structure moléculaire , Protéines de tissu nerveux/agonistes , Protéines de tissu nerveux/génétique , Protéines de tissu nerveux/métabolisme , Oligodendroglie/cytologie , Oligodendroglie/effets des médicaments et des substances chimiques , Oligodendroglie/métabolisme , Propionates/composition chimique , Propionates/pharmacologie , Rats , Rat Wistar , Récepteurs couplés aux protéines G/génétique , Récepteurs couplés aux protéines G/métabolisme , Bibliothèques de petites molécules/composition chimique , Cellules souches/cytologie , Cellules souches/effets des médicaments et des substances chimiques , Cellules souches/métabolisme , bêta-Arrestines
3.
J Med Chem ; 52(9): 2762-75, 2009 May 14.
Article de Anglais | MEDLINE | ID: mdl-19419204

RÉSUMÉ

The P2Y(2) receptor, which is activated by UTP, ATP, and dinucleotides, was studied as a prototypical nucleotide-activated GPCR. A combination of receptor mutagenesis, determination of its effects on potency and efficacy of agonists and antagonists, homology modeling, and chemical experiments was applied. R272 (extracellular loop EL3) was found to play a gatekeeper role, presumably responsible for recognition and orientation of the nucleotides. R272 is also directly involved in binding of dinucleotides, which behaved as partial agonists. Y118A (3.37) mutation led to dramatically reduced efficacy of agonists; it is part of the entry channel as well as the triphosphate binding site. While the Y114A (3.33) mutation did not have any effect on agonist activities, the antagonist Reactive Blue 2 (6) was completely inactive at that mutant. The disulfide bridge Cys25-Cys278 was found to be important for agonist potency but neither for agonist efficacy nor for antagonist potency.


Sujet(s)
Modèles moléculaires , Mutagenèse dirigée , Nucléotides/pharmacologie , Récepteurs purinergiques P2/génétique , Récepteurs purinergiques P2/métabolisme , Similitude de séquences d'acides aminés , Séquence d'acides aminés , Acides aminés/métabolisme , Animaux , Lignée cellulaire , Disulfures/composition chimique , Conception de médicament , Test ELISA , Espace extracellulaire/métabolisme , Expression des gènes , Humains , Ligands , Données de séquences moléculaires , Oxydoréduction , Structure secondaire des protéines , Récepteurs purinergiques P2/biosynthèse , Récepteurs purinergiques P2/composition chimique , Récepteurs purinergiques P2Y2
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