ATP-dependent DEAD-box helicases constitute one of the largest families of RNA helicases and are important regulators of most RNA-dependent cellular processes. The functional core of these enzymes consists of two RecA-like domains. Changes in the interdomain orientation of these domains upon ATP and RNA binding result in the unwinding of double-stranded RNA. The DEAD-box helicase DbpA from E. coli is involved in ribosome maturation. It possesses a C-terminal RNA recognition motif (RRM) in addition to the canonical RecA-like domains. The RRM recruits DbpA to nascent ribosomes by binding to hairpin 92 of the 23S rRNA. To follow the conformational changes of Dbpa during the catalytic cycle we initiated solution state NMR studies. We use a divi...
DEAD-box RNA helicases play various, often critical, roles in all processes where RNAs are involved....
Cooperative binding of ATP and RNA to DEAD-box helicases induces the closed conformation of their he...
International audiencePost-transcriptional modifications are essential to the cell life cycle, as th...
ATP-dependent DEAD-box helicases constitute one of the largest families of RNA helicases and are imp...
DbpA is a putative Escherichia coli ATP dependent RNA helicase belonging to the family of DEAD box p...
DEAD-box RNA helicases are implicated in most aspects of RNA biology, where these enzymes unwind sho...
DbpA is an Escherichia coli DEAD-box RNA helicase implicated in RNA structural isomerization in the ...
DbpA is a DEAD-box RNA helicase implicated in RNA structural rearrangements in the peptidyl transfer...
DbpA is a DEAD-box RNA helicase implicated in the assembly of the large ribosomal subunit. Similar t...
The Escherichia coli DEAD box protein DbpA is unique among the DEAD box family in that its ATPase ac...
The Escherichia coli DEAD (Asp-Glu-Ala-Asp) box protein DbpA is a putative RNA helicase and establis...
DEAD-box RNA helicase proteins use the energy of ATP hydrolysis to drive the unwinding of duplex RNA...
DEAD-box proteins are ATPase enzymes that destabilize and unwind duplex RNA. Quantitative knowledge ...
DFAD-box helicases are ubiquitous enzymes that catalyze the unwinding of energetically stable duplex...
DExD/H proteins catalyze structural rearrangements in RNA by coupling ATP hydrolysis to the destabil...
DEAD-box RNA helicases play various, often critical, roles in all processes where RNAs are involved....
Cooperative binding of ATP and RNA to DEAD-box helicases induces the closed conformation of their he...
International audiencePost-transcriptional modifications are essential to the cell life cycle, as th...
ATP-dependent DEAD-box helicases constitute one of the largest families of RNA helicases and are imp...
DbpA is a putative Escherichia coli ATP dependent RNA helicase belonging to the family of DEAD box p...
DEAD-box RNA helicases are implicated in most aspects of RNA biology, where these enzymes unwind sho...
DbpA is an Escherichia coli DEAD-box RNA helicase implicated in RNA structural isomerization in the ...
DbpA is a DEAD-box RNA helicase implicated in RNA structural rearrangements in the peptidyl transfer...
DbpA is a DEAD-box RNA helicase implicated in the assembly of the large ribosomal subunit. Similar t...
The Escherichia coli DEAD box protein DbpA is unique among the DEAD box family in that its ATPase ac...
The Escherichia coli DEAD (Asp-Glu-Ala-Asp) box protein DbpA is a putative RNA helicase and establis...
DEAD-box RNA helicase proteins use the energy of ATP hydrolysis to drive the unwinding of duplex RNA...
DEAD-box proteins are ATPase enzymes that destabilize and unwind duplex RNA. Quantitative knowledge ...
DFAD-box helicases are ubiquitous enzymes that catalyze the unwinding of energetically stable duplex...
DExD/H proteins catalyze structural rearrangements in RNA by coupling ATP hydrolysis to the destabil...
DEAD-box RNA helicases play various, often critical, roles in all processes where RNAs are involved....
Cooperative binding of ATP and RNA to DEAD-box helicases induces the closed conformation of their he...
International audiencePost-transcriptional modifications are essential to the cell life cycle, as th...