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1.
Mol Pain ; 3: 40, 2007 Dec 17.
Artigo em Inglês | MEDLINE | ID: mdl-18086313

RESUMO

Mechanical hyperalgesia is a clinically-relevant form of pain sensitization that develops through largely unknown mechanisms. TRPA1, a Transient Receptor Potential ion channel, is a sensor of pungent chemicals that may play a role in acute noxious mechanosensation and cold thermosensation. We have developed a specific small molecule TRPA1 inhibitor (AP18) that can reduce cinnameldehyde-induced nociception in vivo. Interestingly, AP18 is capable of reversing CFA-induced mechanical hyperalgesia in mice. Although TRPA1-deficient mice develop normal CFA-induced hyperalgeisa, AP18 is ineffective in the knockout mice, consistent with an on-target mechanism. Therefore, TRPA1 plays a role in sensitization of nociception, and that compensation in TRPA1-deficient mice masks this requirement.


Assuntos
Hiperalgesia/metabolismo , Canais de Potencial de Receptor Transitório/fisiologia , Animais , Comportamento Animal/efeitos dos fármacos , Bradicinina/efeitos adversos , Células CHO , Sinalização do Cálcio/efeitos dos fármacos , Cricetinae , Cricetulus , Modelos Animais de Doenças , Relação Dose-Resposta a Droga , Interações Medicamentosas , Humanos , Hiperalgesia/genética , Hiperalgesia/fisiopatologia , Camundongos , Camundongos Endogâmicos C57BL , Camundongos Knockout , Oócitos , Medição da Dor/métodos , Ratos , Ratos Sprague-Dawley , Canal de Cátion TRPA1 , Transfecção/métodos , Canais de Potencial de Receptor Transitório/antagonistas & inibidores , Canais de Potencial de Receptor Transitório/deficiência , Canais de Potencial de Receptor Transitório/genética , Xenopus
2.
Science ; 307(5709): 600-4, 2005 Jan 28.
Artigo em Inglês | MEDLINE | ID: mdl-15681390

RESUMO

In mammals, a small population of intrinsically photosensitive retinal ganglion cells (ipRGCs) plays a key role in the regulation of nonvisual photic responses, such as behavioral responses to light, pineal melatonin synthesis, pupillary light reflex, and sleep latency. These ipRGCs also express melanopsin (Opn4), a putative opsin-family photopigment that has been shown to play a role in mediating these nonvisual photic responses. Melanopsin is required for the function of this inner retinal pathway, but its precise role in generating photic responses has not yet been determined. We found that expression of melanopsin in Xenopus oocytes results in light-dependent activation of membrane currents through the Galpha(q)/Galpha(11) G protein pathway, with an action spectrum closely matching that of melanopsin-expressing ipRGCs and of behavioral responses to light in mice lacking rods and cones. When coexpressed with arrestins, melanopsin could use all-trans-retinaldehyde as a chromophore, which suggests that it may function as a bireactive opsin. We also found that melanopsin could activate the cation channel TRPC3, a mammalian homolog of the Drosophila phototransduction channels TRP and TRPL. Melanopsin therefore signals more like an invertebrate opsin than like a classical vertebrate rod-and-cone opsin.


Assuntos
Transdução de Sinal Luminoso , Luz , Opsinas de Bastonetes/fisiologia , Transdução de Sinais , Animais , Arrestinas/genética , Arrestinas/metabolismo , Cálcio/metabolismo , Subunidades alfa Gq-G11 de Proteínas de Ligação ao GTP/metabolismo , Proteínas de Ligação ao GTP/metabolismo , Canais Iônicos/genética , Canais Iônicos/metabolismo , Isoenzimas/metabolismo , Camundongos , Oócitos/metabolismo , Técnicas de Patch-Clamp , Fosfolipase C beta , Fosfoproteínas/genética , Fosfoproteínas/metabolismo , Células Ganglionares da Retina/metabolismo , Retinaldeído/metabolismo , Retinaldeído/farmacologia , Opsinas de Bastonetes/genética , Canais de Cátion TRPC , Fosfolipases Tipo C/metabolismo , Xenopus , beta-Arrestinas
4.
Genome Res ; 13(6B): 1395-401, 2003 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-12819138

RESUMO

We analyzed the mouse Representative Transcript and Protein Set for molecules involved in brain function. We found full-length cDNAs of many known brain genes and discovered new members of known brain gene families, including Family 3 G-protein coupled receptors, voltage-gated channels, and connexins. We also identified previously unknown candidates for secreted neuroactive molecules. The existence of a large number of unique brain ESTs suggests an additional molecular complexity that remains to be explored.A list of genes containing CAG stretches in the coding region represents a first step in the potential identification of candidates for hereditary neurological disorders.


Assuntos
Genes/fisiologia , Fenômenos Fisiológicos do Sistema Nervoso , Sistema Nervoso/química , Sistema Nervoso/metabolismo , Transcrição Gênica/genética , Adenina/metabolismo , Sequência de Aminoácidos , Animais , Química Encefálica/genética , Cálcio/fisiologia , Canais de Cálcio/genética , Canais de Cálcio/fisiologia , Canais de Cloreto/genética , Canais de Cloreto/fisiologia , Citosina/metabolismo , Bases de Dados Genéticas , Proteínas de Ligação ao GTP/genética , Biblioteca Gênica , Genes/genética , Guanina/metabolismo , Humanos , Camundongos , Dados de Sequência Molecular , Doenças Neurodegenerativas/genética , Neurônios/química , Neurônios/metabolismo , Neurônios/fisiologia , Neuropeptídeos/genética , Filogenia , Receptores de Superfície Celular/genética , Expansão das Repetições de Trinucleotídeos/genética
5.
Cell ; 112(6): 819-29, 2003 Mar 21.
Artigo em Inglês | MEDLINE | ID: mdl-12654248

RESUMO

Mammals detect temperature with specialized neurons in the peripheral nervous system. Four TRPV-class channels have been implicated in sensing heat, and one TRPM-class channel in sensing cold. The combined range of temperatures that activate these channels covers a majority of the relevant physiological spectrum sensed by most mammals, with a significant gap in the noxious cold range. Here, we describe the characterization of ANKTM1, a cold-activated channel with a lower activation temperature compared to the cold and menthol receptor, TRPM8. ANKTM1 is a distant family member of TRP channels with very little amino acid similarity to TRPM8. It is found in a subset of nociceptive sensory neurons where it is coexpressed with TRPV1/VR1 (the capsaicin/heat receptor) but not TRPM8. Consistent with the expression of ANKTM1, we identify noxious cold-sensitive sensory neurons that also respond to capsaicin but not to menthol.


Assuntos
Canais de Cálcio/metabolismo , Temperatura Baixa , Neurônios Aferentes/metabolismo , Nociceptores/metabolismo , Termorreceptores/metabolismo , Canais de Potencial de Receptor Transitório/metabolismo , Sequência de Aminoácidos , Animais , Anquirinas/química , Células CHO , Capsaicina/farmacologia , Células Cultivadas , Cricetinae , Feminino , Proteínas de Membrana/química , Camundongos , Dados de Sequência Molecular , Proteínas do Tecido Nervoso/metabolismo , Estrutura Terciária de Proteína , Ratos , Ratos Sprague-Dawley , Canal de Cátion TRPA1 , Canais de Cátion TRPC , Termorreceptores/química
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