DEAD-box helicase proteins accelerate folding and rearrangements of highly structured RNAs and RNA–protein complexes (RNPs) in many essential cellular processes. Although DEAD-box proteins have been shown to use ATP to unwind short RNA helices, it is not known how they disrupt RNA tertiary structure. Here, we use single molecule fluorescence to show that the DEAD-box protein CYT-19 disrupts tertiary structure in a group I intron using a helix capture mechanism. CYT-19 binds to a helix within the structured RNA only after the helix spontaneously loses its tertiary contacts, and then CYT-19 uses ATP to unwind the helix, liberating the product strands. Ded1, a multifunctional yeast DEAD-box protein, gives analogous results with small but repro...
RNA molecules play an essential role in many cellular processes, often as components of ribonucleopr...
textNumerous essential cellular processes, such as gene regulation and tRNA processing, are carried ...
DEAD-box RNA helicase proteins use the energy of ATP hydrolysis to drive the unwinding of duplex RNA...
<div><p>DEAD-box helicase proteins accelerate folding and rearrangements of highly structured RNAs a...
textStructured RNAs and RNA-protein complexes (RNPs) are involved in many essential biological proce...
textStructured RNAs are pervasive in biology, spanning a functional repertoire that includes messeng...
<p>DEAD-box proteins (orange) associate with structured RNAs nonspecifically (left), which can resul...
RNA helicases of the DEAD box family are present in all eukaryotic cells and in many bacteria and Ar...
DEAD-box proteins represent the largest family of RNA helicases, present in all three kingdoms of li...
DEAD-box proteins represent the largest family of RNA helicases, present in all three kingdoms of li...
Cooperative binding of ATP and RNA to DEAD-box helicases induces the closed conformation of their he...
DEAD-box RNA helicases are implicated in most aspects of RNA biology, where these enzymes unwind sho...
RNA helicases of the DEAD-box family are involved in essentially all RNA-dependent cellular processe...
SummaryDEAD-box RNA helicases, which regulate various processes involving RNA, have two RecA-like do...
DFAD-box helicases are ubiquitous enzymes that catalyze the unwinding of energetically stable duplex...
RNA molecules play an essential role in many cellular processes, often as components of ribonucleopr...
textNumerous essential cellular processes, such as gene regulation and tRNA processing, are carried ...
DEAD-box RNA helicase proteins use the energy of ATP hydrolysis to drive the unwinding of duplex RNA...
<div><p>DEAD-box helicase proteins accelerate folding and rearrangements of highly structured RNAs a...
textStructured RNAs and RNA-protein complexes (RNPs) are involved in many essential biological proce...
textStructured RNAs are pervasive in biology, spanning a functional repertoire that includes messeng...
<p>DEAD-box proteins (orange) associate with structured RNAs nonspecifically (left), which can resul...
RNA helicases of the DEAD box family are present in all eukaryotic cells and in many bacteria and Ar...
DEAD-box proteins represent the largest family of RNA helicases, present in all three kingdoms of li...
DEAD-box proteins represent the largest family of RNA helicases, present in all three kingdoms of li...
Cooperative binding of ATP and RNA to DEAD-box helicases induces the closed conformation of their he...
DEAD-box RNA helicases are implicated in most aspects of RNA biology, where these enzymes unwind sho...
RNA helicases of the DEAD-box family are involved in essentially all RNA-dependent cellular processe...
SummaryDEAD-box RNA helicases, which regulate various processes involving RNA, have two RecA-like do...
DFAD-box helicases are ubiquitous enzymes that catalyze the unwinding of energetically stable duplex...
RNA molecules play an essential role in many cellular processes, often as components of ribonucleopr...
textNumerous essential cellular processes, such as gene regulation and tRNA processing, are carried ...
DEAD-box RNA helicase proteins use the energy of ATP hydrolysis to drive the unwinding of duplex RNA...