DEAD-box ATPase proteins are found in all clades of life and have been associated with a diverse array of RNA-processing reactions in eukaryotes, bacteria and archaea. Their highly conserved core enables them to bind RNA, often in an ATP-dependent manner. In the course of the ATP hydrolysis cycle, they undergo conformational rearrangements, which enable them to unwind short RNA duplexes or remodel RNA-protein complexes. Thus, they can function as RNA helicases or chaperones. However, when their conformation is locked, they can also clamp RNA and create ATP-dependent platforms for the formation of higher-order ribonucleoprotein complexes. Recently, it was shown that DEAD-box ATPases globally regulate the phase-separation behavior of RNA-prot...
RNA helicases of the DEAD-box family are found in all eukaryotes, most bacteria and many archaea. Th...
AbstractDEAD-box proteins are RNA-dependent ATPases that are widespread in all three kingdoms of lif...
RNA helicases of the DEAD-box protein family form the largest group of helicases. The human DEAD-box...
DEAD-box ATPases constitute a very large protein family present in all cells, often in great abundan...
The ability of proteins and nucleic acids to undergo liquid-liquid phase separation has recently eme...
RNA helicases of the DEAD box family are present in all eukaryotic cells and in many bacteria and Ar...
DEAD-box proteins are characterized by nine con-served motifs. According to these criteria, several ...
AbstractThe RNA chaperone hypothesis suggests the existence of proteins that resolve misfolded RNA s...
textStructured RNAs are pervasive in biology, spanning a functional repertoire that includes messeng...
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...
RNA helicases of the DEAD-box protein family are associated with nearly every processes that involve...
textNumerous essential cellular processes, such as gene regulation and tRNA processing, are carried ...
The yeast DEAD-box protein Has1p is required for the maturation of 18S rRNA, the biogenesis of 40S r...
Mss116 is a Saccharomyces cerevisiae mitochondrial DEAD-box RNA helicase protein that is essential f...
RNA helicases of the DEAD-box family are found in all eukaryotes, most bacteria and many archaea. Th...
AbstractDEAD-box proteins are RNA-dependent ATPases that are widespread in all three kingdoms of lif...
RNA helicases of the DEAD-box protein family form the largest group of helicases. The human DEAD-box...
DEAD-box ATPases constitute a very large protein family present in all cells, often in great abundan...
The ability of proteins and nucleic acids to undergo liquid-liquid phase separation has recently eme...
RNA helicases of the DEAD box family are present in all eukaryotic cells and in many bacteria and Ar...
DEAD-box proteins are characterized by nine con-served motifs. According to these criteria, several ...
AbstractThe RNA chaperone hypothesis suggests the existence of proteins that resolve misfolded RNA s...
textStructured RNAs are pervasive in biology, spanning a functional repertoire that includes messeng...
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...
RNA helicases of the DEAD-box protein family are associated with nearly every processes that involve...
textNumerous essential cellular processes, such as gene regulation and tRNA processing, are carried ...
The yeast DEAD-box protein Has1p is required for the maturation of 18S rRNA, the biogenesis of 40S r...
Mss116 is a Saccharomyces cerevisiae mitochondrial DEAD-box RNA helicase protein that is essential f...
RNA helicases of the DEAD-box family are found in all eukaryotes, most bacteria and many archaea. Th...
AbstractDEAD-box proteins are RNA-dependent ATPases that are widespread in all three kingdoms of lif...
RNA helicases of the DEAD-box protein family form the largest group of helicases. The human DEAD-box...