AbstractADAR2 is an RNA editing enzyme that deaminates adenosines in certain duplex structures. Here, we describe the role of its RNA binding domain, consisting of two copies of a common dsRNA binding motif (dsRBM), in editing site selecivity. ADAR2's dsRBMs bind selectively on a duplex RNA that mimics the Q/R editing site in the glutamate receptor B-subunit pre-mRNA. This selectivity is different from that of PKR's dsRBM I, indicating that dsRBMs from different proteins possess intrinsic binding selectivity. Using directed hydroxyl radical cleavage data, molecular models were developed that predict important recognition surfaces on the RNA for identified dsRBM binding sites. Blocking these surfaces by benzyl modification of guanosine 2-ami...
Adenosine deaminases acting on RNA (ADARs) are enzymes that convert adenosine to inosine in duplex R...
Adenosine deaminases that act on RNA (ADARs) convert adenosine to inosine within double-stranded reg...
Molecules capable of directing changes to nucleic acid sequences are powerful tools for molecular bi...
AbstractADAR2 is an RNA editing enzyme that deaminates adenosines in certain duplex structures. Here...
ADAR enzymes, adenosine deaminases that act on RNA, form a family of RNA editing enzymes that conver...
properties of both nucleosides, inosine is interpreted as guano-sine by cellular machineries during ...
Adenosine deaminases acting on RNA (ADARs) are editing enzymes that convert adenosine to inosine in ...
SummarySequence-dependent recognition of dsDNA-binding proteins is well understood, yet sequence-spe...
Adenosine deaminases acting on RNA (ADARs) hy-drolytically deaminate adenosines (A) in a wide va-rie...
Deamination of adenosine in RNA to form inosine has wide ranging consequences on RNA function includ...
Adenosine deaminases acting on RNA (ADARs) hydrolytically deaminate adenosines (A) in a wide variety...
ADARs are adenosine deaminases responsible for RNA-editing reactions that occur within duplex RNA. C...
SummaryAdenosine deaminases that act on RNA (ADARs) site-selectively modify adenosines to inosines w...
ABSTRACT: ADARs are adenosine deaminases responsible for RNA editing reactions that occur in eukaryo...
Specific RNA recognition of proteins containing the double-strand RNA-binding domain (dsRBD) is esse...
Adenosine deaminases acting on RNA (ADARs) are enzymes that convert adenosine to inosine in duplex R...
Adenosine deaminases that act on RNA (ADARs) convert adenosine to inosine within double-stranded reg...
Molecules capable of directing changes to nucleic acid sequences are powerful tools for molecular bi...
AbstractADAR2 is an RNA editing enzyme that deaminates adenosines in certain duplex structures. Here...
ADAR enzymes, adenosine deaminases that act on RNA, form a family of RNA editing enzymes that conver...
properties of both nucleosides, inosine is interpreted as guano-sine by cellular machineries during ...
Adenosine deaminases acting on RNA (ADARs) are editing enzymes that convert adenosine to inosine in ...
SummarySequence-dependent recognition of dsDNA-binding proteins is well understood, yet sequence-spe...
Adenosine deaminases acting on RNA (ADARs) hy-drolytically deaminate adenosines (A) in a wide va-rie...
Deamination of adenosine in RNA to form inosine has wide ranging consequences on RNA function includ...
Adenosine deaminases acting on RNA (ADARs) hydrolytically deaminate adenosines (A) in a wide variety...
ADARs are adenosine deaminases responsible for RNA-editing reactions that occur within duplex RNA. C...
SummaryAdenosine deaminases that act on RNA (ADARs) site-selectively modify adenosines to inosines w...
ABSTRACT: ADARs are adenosine deaminases responsible for RNA editing reactions that occur in eukaryo...
Specific RNA recognition of proteins containing the double-strand RNA-binding domain (dsRBD) is esse...
Adenosine deaminases acting on RNA (ADARs) are enzymes that convert adenosine to inosine in duplex R...
Adenosine deaminases that act on RNA (ADARs) convert adenosine to inosine within double-stranded reg...
Molecules capable of directing changes to nucleic acid sequences are powerful tools for molecular bi...