The mammalian RNA-specific adenosine deaminases DRADA/dsRAD (alias ADAR) and RED1 (alias ADARB1) have been implicated in the site-selective editing of brain-expressed pre-mRNAs for glutamate receptor subunits and of antigenomic RNA of hepatitis delta virus. These enzymes are expressed in many if not all tissues, predicting an as yet unappreciated significance for adenosine deamination-mediated recoding of gene transcripts in the mammalian organism. We now report the molecular cloning of cDNA for RED2 (alias ADARB2), a third member of the RNA-specific adenosine deaminase family in the rodent. RED2 is closely sequence-related to RED1 but appears to be expressed only in the brain, where expression is widespread reaching highest levels in olfac...
Double-stranded RNA (dsRNA) deaminase (DRADA) deaminates adenosines to inosines in dsRNA. The most l...
In mammals, adenosine (A) to inosine (I) RNA editing is performed by adenosine deaminases acting on ...
ABSTRACT: ADARs are adenosine deaminases responsible for RNA editing reactions that occur in eukaryo...
The mammalian RNA-specific adenosine deaminases DRADA/dsRAD (alias ADAR) and RED1 (alias ADARB1) hav...
RNA-editing deaminase 2 (RED2; ADARB2) is a newly identified potential double-stranded RNA adenosine...
EDITING of RNA1 by site-selective adenosine deamination alters codons in brain-expressed pre-messeng...
RNAs encoding subunits of glutamate-gated ion channel receptors are posttranscriptionally modified b...
The double-stranded RNA-specific editase 1 (RED1/ADAR2) is implicated in the editing of precursor-mR...
RED1 is a double-stranded RNA-specific editase characterized in the rat and is implicated in the edi...
The double-stranded RNA-specific adenosine deaminases ADAR1 and ADAR2 convert adenosine (A) residues...
AbstractThe double-stranded RNA-specific adenosine deaminases ADAR1 and ADAR2 convert adenosine (A) ...
The past year has witnessed major progress in the field of mammalian nuclear RNA editing. Two new se...
RNA editing by site selective adenosine deamination changes codons in several nuclear transcripts in...
Double-stranded RNA (dsRNA)-specific adenosine deaminase converts adenosine to inosine in dsRNA. The...
Glutamate-gated cation selective channels mediate fast excitatory neurotransmission in the mammalian...
Double-stranded RNA (dsRNA) deaminase (DRADA) deaminates adenosines to inosines in dsRNA. The most l...
In mammals, adenosine (A) to inosine (I) RNA editing is performed by adenosine deaminases acting on ...
ABSTRACT: ADARs are adenosine deaminases responsible for RNA editing reactions that occur in eukaryo...
The mammalian RNA-specific adenosine deaminases DRADA/dsRAD (alias ADAR) and RED1 (alias ADARB1) hav...
RNA-editing deaminase 2 (RED2; ADARB2) is a newly identified potential double-stranded RNA adenosine...
EDITING of RNA1 by site-selective adenosine deamination alters codons in brain-expressed pre-messeng...
RNAs encoding subunits of glutamate-gated ion channel receptors are posttranscriptionally modified b...
The double-stranded RNA-specific editase 1 (RED1/ADAR2) is implicated in the editing of precursor-mR...
RED1 is a double-stranded RNA-specific editase characterized in the rat and is implicated in the edi...
The double-stranded RNA-specific adenosine deaminases ADAR1 and ADAR2 convert adenosine (A) residues...
AbstractThe double-stranded RNA-specific adenosine deaminases ADAR1 and ADAR2 convert adenosine (A) ...
The past year has witnessed major progress in the field of mammalian nuclear RNA editing. Two new se...
RNA editing by site selective adenosine deamination changes codons in several nuclear transcripts in...
Double-stranded RNA (dsRNA)-specific adenosine deaminase converts adenosine to inosine in dsRNA. The...
Glutamate-gated cation selective channels mediate fast excitatory neurotransmission in the mammalian...
Double-stranded RNA (dsRNA) deaminase (DRADA) deaminates adenosines to inosines in dsRNA. The most l...
In mammals, adenosine (A) to inosine (I) RNA editing is performed by adenosine deaminases acting on ...
ABSTRACT: ADARs are adenosine deaminases responsible for RNA editing reactions that occur in eukaryo...