نتایج جستجو برای: GABA-C receptors

تعداد نتایج: 1259302  

2009
Vijayan Gangadharan Nitin Agarwal Stefan Brugger Imgard Tegeder Bernhard Bettler Rohini Kuner Martina Kurejova

BACKGROUND gamma-aminobutyric acid (GABA) is an important inhibitory neurotransmitter which mainly mediates its effects on neurons via ionotropic (GABA(A)) and metabotropic (GABA(B)) receptors. GABA(B) receptors are widely expressed in the central and the peripheral nervous system. Although there is evidence for a key function of GABA(B) receptors in the modulation of pain, the relative contrib...

2000
Antoinette O. Ige Paul Bolam Fiona H. Marshall Piers C. Emson

Following the recent discovery that GABA receptors expressed in cell lines are only functional when both GABA and GABA are B B1 B2 expressed, the present study reports on the development of polyclonal antisera specific for carboxyl-terminal portions of the two related GABA receptor components respectively. Western blotting indicated the specificity of affinity-purified antibodies for native or ...

2012
W. Gordon Frankle Raymond Y. Cho N. Scott Mason Chi-Min Chen Michael Himes Christopher Walker David A. Lewis Chester A. Mathis Rajesh Narendran

Evidence indicates that synchronization of cortical activity at gamma-band frequencies, mediated through GABA-A receptors, is important for perceptual/cognitive processes. To study GABA signaling in vivo, we recently used a novel positron emission tomography (PET) paradigm measuring the change in binding of the benzodiazepine (BDZ) site radiotracer [(11)C]flumazenil associated with increases in...

2007
Saobo Lei Pan-Yue Deng James E. Porter Hee-Sup Shin

Whereas the entorhinal cortex (EC) receives noradrenergic innervations from the locus coeruleus of the pons and expresses adrenergic receptors, the function of norepinephrine (NE) in the EC is still elusive. We examined the effects of NE on GABA A receptor-mediated synaptic transmission in the superficial layers of the EC. Application of NE dose-dependently increased the frequency and amplitude...

2010
Patrick J. Maier Isabel Marin Thomas Grampp Andrea Sommer Dietmar Benke

Metabotropic GABA(B) receptors are abundantly expressed at glutamatergic synapses where they control excitability of the synapse. Here we tested the hypothesis that glutamatergic neurotransmission may feed back to regulate GABA(B) receptors. We found that application of glutamate to cultured cortical neurons led to rapid downregulation of GABA(B) receptors via lysosomal degradation. This effect...

Journal: :Neuroscience 2001
K J Charles M L Evans M J Robbins A R Calver R A Leslie M N Pangalos

GABA(B) receptors are G-protein-coupled receptors mediating the slow onset and prolonged synaptic actions of GABA in the CNS. The recent cloning of two genes, GABA(B1) and GABA(B2), has revealed a novel requirement for GABA(B) receptor signalling. Studies have demonstrated that the two receptor subunits associate as a GABA(B1)/GABA(B2) heterodimer to form a functional GABA(B) receptor. In this ...

Journal: :Neuroendocrinology 2002
Katia Gamel-Didelon Claudia Corsi Giancarlo Pepeu Heike Jung Manfred Gratzl Artur Mayerhofer

There is increasing evidence suggesting that the neurotransmitter gamma-aminobutyric acid (GABA) is a local factor involved in the regulation of endocrine organs. Examples of such functions are documented in the pancreas, but recent results suggest that GABA may act in a similar way in the pituitary, in which GABA receptors are expressed and pituitary growth hormone (GH) cells provide a source ...

Journal: :Neuron 2000
Marta Margeta-Mitrovic Yuh Nung Jan Lily Yeh Jan

Surface expression of GABA(B) receptors requires heterodimerization of GB1 and GB2 subunits, but little is known about mechanisms that ensure efficient heterodimer assembly. We found that expression of the GB1 subunit on the cell surface is prevented through a C-terminal retention motif RXR(R); this sequence is reminiscent of the ER retention/retrieval motif RKR identified in subunits of the AT...

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