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1.
J Med Chem ; 53(23): 8354-61, 2010 Dec 09.
Artigo em Inglês | MEDLINE | ID: mdl-21067182

RESUMO

We describe an improved synthesis and detailed pharmacological characterization of the conformationally restricted analogue of the naturally occurring nonselective glutamate receptor agonist ibotenic acid (RS)-3-hydroxy-4,5,6,7-tetrahydroisoxazolo[5,4-c]pyridine-7-carboxylic acid (7-HPCA, 5) at AMPA receptor subtypes. Compound 5 was shown to be a subtype-discriminating agonist at AMPA receptors with higher binding affinity and functional potency at GluA1/2 compared to GluA3/4, unlike the isomeric analogue (RS)-3-hydroxy-4,5,6,7-tetrahydroisoxazolo[5,4-c]pyridine-5-carboxylic acid (5-HPCA, 4) that binds to all AMPA receptor subtypes with comparable potency. Biostructural X-ray crystallographic studies of 4 and 5 reveal different binding modes of (R)-4 and (S)-5 in the GluA2 agonist binding domain. WaterMap analysis of the GluA2 and GluA4 binding pockets with (R)-4 and (S)-5 suggests that the energy of hydration sites is ligand dependent, which may explain the observed selectivity.


Assuntos
Antagonistas de Aminoácidos Excitatórios/farmacologia , Ácido Ibotênico/farmacologia , Receptores de Glutamato/efeitos dos fármacos , Animais , Linhagem Celular , Cristalografia por Raios X , Antagonistas de Aminoácidos Excitatórios/química , Ácido Ibotênico/química , Modelos Moleculares , Ratos , Spodoptera , Xenopus laevis
2.
J Med Chem ; 52(15): 4911-22, 2009 Aug 13.
Artigo em Inglês | MEDLINE | ID: mdl-19588945

RESUMO

The design, synthesis, and pharmacological characterization of a highly potent and selective glutamate GluR5 agonist is reported. (S)-2-Amino-3-((RS)-3-hydroxy-8-methyl-7,8-dihydro-6H-cyclohepta[d]isoxazol-4-yl)propionic acid (5) is the 8-methyl analogue of (S)-2-amino-3-(3-hydroxy-7,8-dihydro-6H-cyclohepta[d]isoxazol-4-yl)propionic acid ((S)-4-AHCP, 4). Compound 5 displays an improved selectivity profile compared to 4. A versatile stereoselective synthetic route for this class of compounds is presented along with the characterization of the binding affinity of 5 to ionotropic glutamate receptors (iGluRs). Functional characterization of 5 at cloned iGluRs using a calcium imaging assay and voltage-clamp recordings show a different activation of GluR5 compared to (S)-glutamic acid (Glu), kainic acid (KA, 1), and (S)-2-amino-3-(3-hydroxy-5-tert-butyl-4-isoxazolyl)propionic acid ((S)-ATPA, 3) as previously demonstrated for 4. An X-ray crystallographic analysis of 4 and computational analyses of 4 and 5 bound to the GluR5 agonist binding domain (ABD) are presented, including a watermap analysis, which suggests that water molecules in the agonist binding site are important selectivity determinants.


Assuntos
Agonistas de Aminoácidos Excitatórios/síntese química , Receptores de Ácido Caínico/agonistas , Animais , Linhagem Celular , Cristalografia por Raios X , Desenho de Fármacos , Agonistas de Aminoácidos Excitatórios/química , Agonistas de Aminoácidos Excitatórios/farmacologia , Humanos , Modelos Moleculares , Propionatos/síntese química , Propionatos/química , Propionatos/farmacologia , Receptores de Ácido Caínico/química , Receptores de Ácido Caínico/fisiologia , Estereoisomerismo , Relação Estrutura-Atividade , Xenopus laevis
3.
J Med Chem ; 51(24): 8088-95, 2008 Dec 25.
Artigo em Inglês | MEDLINE | ID: mdl-19053823

RESUMO

Gamma-hydroxybutyrate (GHB) is a metabolite of gamma-aminobutyric acid (GABA) and has been proposed to function as a neurotransmitter or neuromodulator. GHB is used in the treatment of narcolepsy and is a drug of abuse. GHB binds to both GABA(B) receptors and specific high-affinity GHB sites in brain, of which the latter have not been linked unequivocally to function, but are speculated to be GHB receptors. In this study, a series of biaromatic 4-substituted GHB analogues, including 4'-phenethylphenyl, 4'-styrylphenyl, and 4'-benzyloxyphenyl GHB analogues, were synthesized and characterized pharmacologically in a [3H](E,RS)-(6,7,8,9-tetrahydro-5-hydroxy-5H-benzocyclohept-6-ylidene)acetic acid ([3H]NCS-382) binding assay and in GABA(A) and GABA(B) receptor binding assays. The compounds were selective for the high-affinity GHB binding sites and several displayed Ki values below 100 nM. The affinity of the 4-[4'-(2-iodobenzyloxy)phenyl] GHB analogue 17b was shown to reside predominantly with the R-enantiomer (Ki = 22 nM), which has higher affinity than previously reported GHB ligands.


Assuntos
Química Farmacêutica/métodos , Hidroxibutiratos/química , Animais , Sítios de Ligação , Encéfalo/metabolismo , Cromatografia/métodos , Cristalografia por Raios X/métodos , Desenho de Fármacos , Humanos , Hidroxibutiratos/síntese química , Concentração Inibidora 50 , Cinética , Ligantes , Modelos Químicos , Ligação Proteica , Ratos
4.
J Pharmacol Exp Ther ; 315(1): 346-51, 2005 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-16014570

RESUMO

Gamma-hydroxybutyrate (GHB) is a psychotropic compound endogenous to the brain. Despite its potentially great physiological significance, its exact molecular mechanism of action is unknown. GHB is a weak agonist at GABA(B) receptors, but there is also evidence of specific GHB receptor sites, the molecular cloning of which remains a challenge. Ligands with high affinity and specificity for the reported GHB binding site are needed for pharmacological dissection of the GHB and GABA(B) effects and for mapping the structural requirements of the GHB receptor-ligand interactions. For this purpose, we have synthesized and assayed three conformationally restricted GHB analogs for binding against the GHB-specific ligand [3H]NCS-382 [(E,RS)-(6,7,8,9-tetrahydro-5-hydroxy-5H-benzocyclohept-6-ylidene-)acetic acid] in rat brain homogenate. The cyclohexene and cyclopentene analogs, 3-hydroxycyclohex-1-enecarboxylic acid [(RS)-HOCHCA] and 3-hydroxycyclopent-1-enecarboxylic acid [(RS)-HOCPCA], were found to be high-affinity GHB ligands, with IC50 values in the nanomolar range, and had 9 and 27 times, respectively, higher affinity than GHB. The stereo-selectively synthesized R,R-isomer of the trans-cyclopropyl GHB analog, HOCPrCA, proved to have 10-fold higher affinity than its enantiomer. Likewise, the R-enantiomers of HOCHCA and HOCPCA selectively inhibited [3H]NCS-382 binding. The best inhibitor of these, (R)-HOCPCA, has an affinity 39 times higher than GHB and is thus among the best GHB ligands reported to date. Neither of the cycloalkenes showed any affinity (IC50 > 1 mM) for GABA(A) or GABA(B) receptors. These compounds show excellent potential as lead structures and novel tools for studying specific GHB receptor-mediated pharmacology.


Assuntos
Encéfalo/metabolismo , Oxibato de Sódio/metabolismo , Animais , Benzocicloeptenos/metabolismo , Sítios de Ligação , Masculino , Conformação Molecular , Ratos , Ratos Sprague-Dawley , Receptores de GABA/metabolismo , Oxibato de Sódio/análogos & derivados , Oxibato de Sódio/química
5.
FEBS J ; 272(7): 1639-48, 2005 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-15794751

RESUMO

The X-ray structure of the ionotropic GluR2 ligand-binding core (GluR2-S1S2J) in complex with the bicyclical AMPA analogue (S)-2-amino-3-(3-hydroxy-7,8-dihydro-6H-cyclohepta[d]-4-isoxazolyl)propionic acid [(S)-4-AHCP] has been determined, as well as the binding pharmacology of this construct and of the full-length GluR2 receptor. (S)-4-AHCP binds with a glutamate-like binding mode and the ligand adopts two different conformations. The K(i) of (S)-4-AHCP at GluR2-S1S2J was determined to be 185 +/- 29 nM and at full-length GluR2(R)o it was 175 +/- 8 nM. (S)-4-AHCP appears to elicit partial agonism at GluR2 by inducing an intermediate degree of domain closure (17 degrees). Also, functionally (S)-4-AHCP has an efficacy of 0.38 at GluR2(Q)i, relative to (S)-glutamate. The proximity of bound (S)-4-AHCP to domain D2 prevents full D1-D2 domain closure, which is limited by steric repulsion, especially between Leu704 and the ligand.


Assuntos
Alanina/análogos & derivados , Alanina/metabolismo , Isoxazóis/metabolismo , Receptores de AMPA/metabolismo , Alanina/farmacologia , Animais , Células Cultivadas , Feminino , Isoxazóis/farmacologia , Ligantes , Spodoptera , Xenopus laevis
6.
Eur J Pharmacol ; 497(2): 125-37, 2004 Aug 23.
Artigo em Inglês | MEDLINE | ID: mdl-15306197

RESUMO

In a recent study, racemic 3-(N,N-dimethylamino)butyl-N,N-dimethylcarbamate (1) was shown to be a potent agonist at neuronal nicotinic acetylcholine receptors with a high selectivity for nicotinic over muscarinic acetylcholine receptors [Mol. Pharmacol. 64 (2003) 865-875]. Here we present the synthesis and pharmacological characterization of a series of analogs of, where the methyl group at C-3 has been replaced by different alkyl substituents. Ring systems have been incorporated into the carbon backbone of some of the molecules, or the amino group has been build into ring systems. Furthermore, the (+)- and (-)-enantiomers of have been separated, and X-ray crystallography has revealed that (-)-1 possesses (S)-configuration. The compounds have been characterized pharmacologically at recombinant nicotinic receptor subtypes. The structure-activity relationship study has provided valuable insight into the mode of interactions of and its analogs with neuronal nicotinic acetylcholine receptors.


Assuntos
Carbacol/análogos & derivados , Carbacol/síntese química , Receptores Nicotínicos/metabolismo , Animais , Carbacol/metabolismo , Carbacol/farmacologia , Linhagem Celular , Relação Dose-Resposta a Droga , Humanos , Ligação Proteica/efeitos dos fármacos , Ligação Proteica/fisiologia , Ratos , Relação Estrutura-Atividade
7.
Chirality ; 16(7): 452-66, 2004 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-15236343

RESUMO

We have previously used homologation of (S)-glutamic acid (Glu) and Glu analogs as an approach to the design of selective ligands for different subtypes of Glu receptors. (RS)-2-Amino-3-(3-carboxy-5-methyl-4-isoxazolyl)propionic acid (ACPA), which is an isoxazole homolog of Glu, is a very potent agonist at the (RS)-2-amino-3-(3-hydroxy-5-methyl-4-isoxazolyl)propionic acid (AMPA) subgroup of Glu receptors and a moderately potent ligand for the kainic acid (KA) subgroup of Glu receptors. The enantiomers of ACPA were previously obtained by chiral HPLC resolution. Prompted by pharmacological interest in ACPA, we have now prepared the (S)- and (R)-enantiomers of ACPA by stereocontrolled syntheses using (1R,2R,5R)- and (1S,2S,5S)-2-hydroxy-3-pinanone, respectively, as chiral auxiliaries. Furthermore, the 5-ethyl analog of ACPA, Ethyl-ACPA, was synthesized, and (S)- and (R)-Ethyl-ACPA were also prepared using this method. The absolute configurations of (S)- and (R)-ACPA were established by X-ray crystallographic analysis of a protected (1S,2S,5S)-2-hydroxy-3-pinanone imine derivative of (R)-ACPA. The absolute stereochemistry of (S)- and (R)-Ethyl-ACPA was assigned on the basis of a comparison of their properties with those of the enantiomers of ACPA, employing elution order on chiral HPLC columns, as well as circular dichroism (CD) spectroscopy in combination with time-dependent density functional theory. The structural and electronic basis for the Cotton effect observed for such analogs is examined. The lower homolog of ACPA, (RS)-2-amino-2-(3-carboxy-5-methyl-4-isoxazolyl)acetic acid (1), which is a Glu analog, was also synthesized. Affinities and neuroexcitatory effects were determined using rat brain membranes and cortical wedges, respectively, at native AMPA, KA, and N-methyl-D-aspartic acid (NMDA) receptors. The molecular pharmacology of (S)- and (R)-ACPA and (S)- and (R)-Ethyl-ACPA was evaluated at homomeric cloned subtypes of AMPA receptors (iGluR1o,3o,4o) and of KA receptors (iGluR5,6), expressed in Xenopus laevis oocytes. The cloned receptors mGluR1alpha, mGluR2, and mGluR4a, expressed in CHO cell lines, were used to study the effects of the five compounds at metabotropic Glu receptors. In accordance with ligand-receptor complexes known from X-ray crystallography, the conformationally restricted Glu analog 1 was inactive at all Glu receptors studied, and the R-forms of ACPA and Ethyl-ACPA were very weak or inactive at these receptors. At AMPA receptor subtypes, (S)-ACPA and (S)-Ethyl-ACPA showed equally potent agonist effects at iGluR1o and iGluR3o, whereas (S)-Ethyl-ACPA was 6-fold more potent than (S)-ACPA at iGluR4o. (S)-ACPA and (S)-Ethyl-ACPA were approximately an order of magnitude less potent at iGluR5 than at AMPA receptor subtypes, and neither compound showed detectable effects at iGluR6. The binding mode of (S)-Ethyl-ACPA at iGluR2 was examined by docking to the (S)-ACPA-iGluR2 complex.


Assuntos
Ácido alfa-Amino-3-hidroxi-5-metil-4-isoxazol Propiônico/síntese química , Ácido alfa-Amino-3-hidroxi-5-metil-4-isoxazol Propiônico/farmacologia , Animais , Células CHO , Cromatografia Líquida de Alta Pressão , Dicroísmo Circular , Cricetinae , Cristalografia por Raios X , Eletrofisiologia , Ácido Glutâmico/metabolismo , Ligação de Hidrogênio , Concentração Inibidora 50 , Conformação Molecular , Óvulo , Ratos , Receptores de Glutamato/genética , Receptores de Glutamato/metabolismo , Sistemas do Segundo Mensageiro/efeitos dos fármacos , Estereoisomerismo , Xenopus , Ácido alfa-Amino-3-hidroxi-5-metil-4-isoxazol Propiônico/análogos & derivados , Ácido alfa-Amino-3-hidroxi-5-metil-4-isoxazol Propiônico/química
8.
Org Biomol Chem ; 2(2): 206-13, 2004 Jan 21.
Artigo em Inglês | MEDLINE | ID: mdl-14737644

RESUMO

(RS)-3-Hydroxy-4,5,6,7-tetrahydroisoxazolo[5,4-c]pyridine-5-carboxylic acid (5-HPCA)(), which is a conformationally constrained cyclised analogue of AMPA has previously been described as causing glutamate receptor mediated excitations of spontaneously firing cat spinal interneurons in a similar fashion to AMPA. We have now prepared the enantiomers of through chiral chromatographic resolution of (RS)-3-(carboxymethoxy)-4,5,6,7-tetrahydroisoxazolo[5,4-c]pyridine-5-carboxylic acid () followed by a stereoconservative hydrolysis resulting in the enantiomers of with high enantiomeric excess (% ee [greater-than-or-equal] 99). The absolute configurations indicated by an X-ray analysis of (-)- monohydrate were confirmed by comparing observed and ab initio calculated electronic circular dichroism spectra and by stereoconservative synthesis of (S)- from (S)-AMPA, the pharmacologically active form of AMPA. The pharmacological effects at native and cloned (GluR1-4) AMPA receptors were shown to reside exclusively with (R)-(+)-, in striking contrast to the usual stereoselectivity trend among AMPA receptor agonists. The reasons for this anomalous behaviour became clear upon docking both enantiomers of to the agonist binding site of GluR2.


Assuntos
2-Amino-5-fosfonovalerato/análogos & derivados , Isoxazóis/química , Isoxazóis/metabolismo , Receptores de AMPA/metabolismo , Ácido alfa-Amino-3-hidroxi-5-metil-4-isoxazol Propiônico/análogos & derivados , Ácido alfa-Amino-3-hidroxi-5-metil-4-isoxazol Propiônico/metabolismo , 2-Amino-5-fosfonovalerato/química , 2-Amino-5-fosfonovalerato/metabolismo , Animais , Cromatografia Líquida de Alta Pressão/métodos , Dicroísmo Circular/métodos , Cristalografia por Raios X , Ciclização , Isoxazóis/síntese química , Modelos Moleculares , Conformação Molecular , Ensaio Radioligante , Ratos , Receptores de AMPA/química , Receptores de Ácido Caínico/química , Receptores de Ácido Caínico/metabolismo , Estereoisomerismo , Ácido alfa-Amino-3-hidroxi-5-metil-4-isoxazol Propiônico/síntese química
9.
J Med Chem ; 46(8): 1350-8, 2003 Apr 10.
Artigo em Inglês | MEDLINE | ID: mdl-12672235

RESUMO

We have previously described (RS)-2-amino-3-(3-hydroxy-7,8-dihydro-6H-cyclohepta[d]isoxazol-4-yl)propionic acid (4-AHCP) as a highly effective agonist at non-N-methyl-d-aspartate (non-NMDA) glutamate (Glu) receptors in vivo, which is more potent than (RS)-2-amino-3-(3-hydroxy-5-methylisoxazol-4-yl)propionic acid (AMPA) but inactive at NMDA receptors. However, 4-AHCP was found to be much weaker than AMPA as an inhibitor of [(3)H]AMPA binding and to have limited effect in a [(3)H]kainic acid binding assay using rat cortical membranes. To shed light on the mechanism(s) underlying this quite enigmatic pharmacological profile of 4-AHCP, we have now developed a synthesis of (S)-4-AHCP (6) and (R)-4-AHCP (7). At cloned metabotropic Glu receptors mGluR1alpha (group I), mGluR2 (group II), and mGluR4a (group III), neither 6 nor 7 showed significant agonist or antagonist effects. The stereoisomer 6, but not 7, activated cloned AMPA receptor subunits GluR1o, GluR3o, and GluR4o with EC(50) values in the range 4.5-15 microM and the coexpressed kainate-preferring subunits GluR6 + KA2 (EC(50) = 6.4 microM). Compound 6, but not 7, proved to be a very potent agonist (EC(50) = 0.13 microM) at the kainate-preferring GluR5 subunit, equipotent with (S)-2-amino-3-(5-tert-butyl-3-hydroxyisothiazol-4-yl)propionic acid [(S)-Thio-ATPA, 4] and almost 4 times more potent than (S)-2-amino-3-(5-tert-butyl-3-hydroxyisoxazol-4-yl)propionic acid [(S)-ATPA, 3]. Compound 6 thus represents a new structural class of GluR5 agonists. Molecular modeling and docking to a crystal structure of the extracellular binding domain of the AMPA subunit GluR2 has enabled identification of the probable active conformation and binding mode of 6. We are able to rationalize the observed selectivities by comparing the docking of 4 and 6 to subtype constructs, i.e., a crystal structure of the extracellular binding domain of GluR2 and a homology model of GluR5.


Assuntos
Agonistas de Aminoácidos Excitatórios/síntese química , Isoxazóis/síntese química , Propionatos/síntese química , Receptores de Ácido Caínico/agonistas , Alanina/análogos & derivados , Alanina/síntese química , Alanina/química , Alanina/farmacologia , Sequência de Aminoácidos , Animais , Células CHO , Cricetinae , Agonistas de Aminoácidos Excitatórios/química , Agonistas de Aminoácidos Excitatórios/farmacologia , Técnicas In Vitro , Isoxazóis/química , Isoxazóis/farmacologia , Ligantes , Modelos Moleculares , Conformação Molecular , Dados de Sequência Molecular , Método de Monte Carlo , Oócitos/efeitos dos fármacos , Oócitos/fisiologia , Técnicas de Patch-Clamp , Propionatos/química , Propionatos/farmacologia , Ensaio Radioligante , Homologia de Sequência de Aminoácidos , Estereoisomerismo , Relação Estrutura-Atividade , Xenopus laevis
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