Radioligand binding and cDNA homology studies have suggested the existence of opiate receptors distinct from the recently-cloned p, S and K receptors. XORlS, a rat brain cDNA whose predicted translation product displays 67-72% homology with those encoded by ~1, 61 and ~1 opiate receptor cDNAs, was constructed from two partial cDNAs identified through cDNA homology approaches. A longer XORlL variant of this cDNA was also identified by polymerase chain reaction studies using genomic DNA and cDNA from brain and peripheral tissues. XORl mRNA is most highly expressed in hypothalamus. COS cell expression of both clones confers neither robust binding of opiate hgands nor reproducible opiate inhibition of forskolin-stimulated adenylate cyclase...
The m opioid receptor gene, OPRM1, undergoes extensive alternative pre-mRNA splicing in rodents and ...
We have isolated a rat cDNA clone that displays 75% amino acid homology with the mouse [delta] and r...
<div><p>The µ opioid receptor gene, <i>OPRM1</i>, undergoes extensive alternative pre-mRNA splicing ...
Radioligand binding and cDNA homology studies have suggested the existence of opiate receptors disti...
AbstractRadioligand binding and cDNA homology studies have suggested the existence of opiate recepto...
Radioligand binding and cDNA homology studies have suggested the existence of opiate receptors disti...
AbstractA cDNA was isolated from rat brain by low stringency hybridization with the rat μ opioid rec...
AbstractA human μ opiate receptor cDNA has been identified from a cerebral cortical cDNA library usi...
A human .mu. opiate receptor cDNA has been identified from a cerebral cortical CDNA library using se...
AbstractWe have cloned a cDNA for a novel member of the opioid receptor family, designated as ROR-C,...
AbstractWe cloned a cDNA for the rat K-opioid receptor from a rat thalamus cDNA library. The deduced...
AbstractSelective PCR amplification of human and mouse genomic DNAs with oligonucleotides encoding h...
AbstractA partial μ opioid receptor gene was isolated from a human genomic library using a mouse δ o...
We have used the mouse #{244}-opioidreceptor (mDOR) cDNA to isolate the mDOR gene and its human homo...
AbstractA novel G protein-coupled receptor was cloned by PCR and homology screening. Its deduced ami...
The m opioid receptor gene, OPRM1, undergoes extensive alternative pre-mRNA splicing in rodents and ...
We have isolated a rat cDNA clone that displays 75% amino acid homology with the mouse [delta] and r...
<div><p>The µ opioid receptor gene, <i>OPRM1</i>, undergoes extensive alternative pre-mRNA splicing ...
Radioligand binding and cDNA homology studies have suggested the existence of opiate receptors disti...
AbstractRadioligand binding and cDNA homology studies have suggested the existence of opiate recepto...
Radioligand binding and cDNA homology studies have suggested the existence of opiate receptors disti...
AbstractA cDNA was isolated from rat brain by low stringency hybridization with the rat μ opioid rec...
AbstractA human μ opiate receptor cDNA has been identified from a cerebral cortical cDNA library usi...
A human .mu. opiate receptor cDNA has been identified from a cerebral cortical CDNA library using se...
AbstractWe have cloned a cDNA for a novel member of the opioid receptor family, designated as ROR-C,...
AbstractWe cloned a cDNA for the rat K-opioid receptor from a rat thalamus cDNA library. The deduced...
AbstractSelective PCR amplification of human and mouse genomic DNAs with oligonucleotides encoding h...
AbstractA partial μ opioid receptor gene was isolated from a human genomic library using a mouse δ o...
We have used the mouse #{244}-opioidreceptor (mDOR) cDNA to isolate the mDOR gene and its human homo...
AbstractA novel G protein-coupled receptor was cloned by PCR and homology screening. Its deduced ami...
The m opioid receptor gene, OPRM1, undergoes extensive alternative pre-mRNA splicing in rodents and ...
We have isolated a rat cDNA clone that displays 75% amino acid homology with the mouse [delta] and r...
<div><p>The µ opioid receptor gene, <i>OPRM1</i>, undergoes extensive alternative pre-mRNA splicing ...