AbstractRadiation inactivation analysis of the binding of the A1 adenosine receptor antagonist, 8-cyclopentyl-1,3-dipropylxanthine to rat brain membranes yielded a radiation inactivation size of 58 kDa. In the presence of GTPγS this was reduced to 33 kDa, in good agreement with the size of the ligand-binding subunit detected after photoaffinity labelling. The data indicate that the structural association of A1 adenosine receptors with G-protein components is altered in situ in the presence of guanine nucleotides
Rat brain tissue was used to study alterations at adenosine A1 receptors, in adenosine metabolising ...
Ionizing radiation affects plasma membrane functions mediated through transmembrane proteins includi...
Cell membrane is highly sensitive to irradiation which, acting directly or indirectly, may disturb f...
AbstractRadiation inactivation analysis of the binding of the A1 adenosine receptor antagonist, 8-cy...
Radiation inactivation analysis of the binding of the A1 adenosine receptor antagonist, 8-cyclopenty...
The effects of guanine nucleotides on binding of 8-cyclopentyl-1,3-[\(^3\)H]dipropylxanthine [\(^3\)...
A\(_1\) adenosine receptors in coated vesicles have been characterized by radioligand binding and ph...
AbstractChronic treatment of rats with R-PIA ‘in vivo’ desensitized adenosine A1 receptor-mediated i...
An orphan G protein-coupled receptor from rat has recently been discovered to be activated by the nu...
Activation of adenosine A(1) receptors (A(1)R) in the brain causes sedation, reduces anxiety, inhibi...
Radioligand binding to A\(_1\) adenosine receptors at brain membranes from seven species was investi...
Chemical modification of amino acid residues was used to probe the ligand recognition site of A\(_1\...
Activation of adenosine A(1) receptors (A(1)R) in the brain causes sedation, reduces anxiety, inhibi...
Activation of adenosine A(1) receptors (A(1)R) in the brain causes sedation, reduces anxiety, inhibi...
Adenosine acts as a neuromodulator through at least two receptor subtypes, A1 and A2. A2 receptors h...
Rat brain tissue was used to study alterations at adenosine A1 receptors, in adenosine metabolising ...
Ionizing radiation affects plasma membrane functions mediated through transmembrane proteins includi...
Cell membrane is highly sensitive to irradiation which, acting directly or indirectly, may disturb f...
AbstractRadiation inactivation analysis of the binding of the A1 adenosine receptor antagonist, 8-cy...
Radiation inactivation analysis of the binding of the A1 adenosine receptor antagonist, 8-cyclopenty...
The effects of guanine nucleotides on binding of 8-cyclopentyl-1,3-[\(^3\)H]dipropylxanthine [\(^3\)...
A\(_1\) adenosine receptors in coated vesicles have been characterized by radioligand binding and ph...
AbstractChronic treatment of rats with R-PIA ‘in vivo’ desensitized adenosine A1 receptor-mediated i...
An orphan G protein-coupled receptor from rat has recently been discovered to be activated by the nu...
Activation of adenosine A(1) receptors (A(1)R) in the brain causes sedation, reduces anxiety, inhibi...
Radioligand binding to A\(_1\) adenosine receptors at brain membranes from seven species was investi...
Chemical modification of amino acid residues was used to probe the ligand recognition site of A\(_1\...
Activation of adenosine A(1) receptors (A(1)R) in the brain causes sedation, reduces anxiety, inhibi...
Activation of adenosine A(1) receptors (A(1)R) in the brain causes sedation, reduces anxiety, inhibi...
Adenosine acts as a neuromodulator through at least two receptor subtypes, A1 and A2. A2 receptors h...
Rat brain tissue was used to study alterations at adenosine A1 receptors, in adenosine metabolising ...
Ionizing radiation affects plasma membrane functions mediated through transmembrane proteins includi...
Cell membrane is highly sensitive to irradiation which, acting directly or indirectly, may disturb f...