RNA molecules play an essential role in many cellular processes, often as components of ribonucleoprotein complexes. Like proteins, RNA molecules adopt sequence-specific secondary and tertiary structures that are essential for function; alteration of these structures therefore provides a means of regulating RNA function. The discovery of DEAD box proteins, a large family of proteins that share several highly conserved motifs and have known or putative ATP-dependent RNA helicase activity, has provoked growing interest in the concept that regulation of RNA function may occur through local unwinding of complex RNA structures.</p
The DEAD-box family of putative RNA helicases is composed of ubiquitous proteins that are found in n...
DEAD-box RNA helicases play various, often critical, roles in all processes where RNAs are involved....
textStructured RNAs are pervasive in biology, spanning a functional repertoire that includes messeng...
RNA molecules play an essential role in many cellular processes, often as components of ribonucleopr...
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...
The centrality of RNA within the biological world is an irrefutable fact that currently attracts inc...
DFAD-box helicases are ubiquitous enzymes that catalyze the unwinding of energetically stable duplex...
Members of the DEAD box family of RNA helicases are known to be involved in most cellular processes ...
Members of the DEAD box family of RNA helicases, which are characterised by the presence of twelve c...
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...
The mammalian DEAD-box RNA helicase DDX5, its paralog DDX17, and their orthologs in Saccharomyces ce...
textStructured RNAs and RNA-protein complexes (RNPs) are involved in many essential biological proce...
The DEAD-box family of putative RNA helicases is composed of ubiquitous proteins that are found in n...
DEAD-box RNA helicases play various, often critical, roles in all processes where RNAs are involved....
textStructured RNAs are pervasive in biology, spanning a functional repertoire that includes messeng...
RNA molecules play an essential role in many cellular processes, often as components of ribonucleopr...
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...
The centrality of RNA within the biological world is an irrefutable fact that currently attracts inc...
DFAD-box helicases are ubiquitous enzymes that catalyze the unwinding of energetically stable duplex...
Members of the DEAD box family of RNA helicases are known to be involved in most cellular processes ...
Members of the DEAD box family of RNA helicases, which are characterised by the presence of twelve c...
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...
The mammalian DEAD-box RNA helicase DDX5, its paralog DDX17, and their orthologs in Saccharomyces ce...
textStructured RNAs and RNA-protein complexes (RNPs) are involved in many essential biological proce...
The DEAD-box family of putative RNA helicases is composed of ubiquitous proteins that are found in n...
DEAD-box RNA helicases play various, often critical, roles in all processes where RNAs are involved....
textStructured RNAs are pervasive in biology, spanning a functional repertoire that includes messeng...