Active DNA-dependent ATPase A Domain (ADAAD) is a SWI2/SNF2 protein that hydrolyzes ATP in the presence of stem–loop DNA that contains both double-stranded and single-stranded regions. ADAAD possesses the seven helicase motifs that are a characteristic feature of all the SWI2/SNF2 proteins present in yeast as well as mammalian cells. In addition, these proteins also possess the Q motif ∼17 nucleotides upstream of motif I. Using site-directed mutagenesis, we have sought to define the role of motifs Q and I in ATP hydrolysis mediated by ADAAD. We show that in ADAAD both motifs Q and I are required for ATP catalysis but not for ATP binding. In addition, the conserved glutamine present in motif Q also dictates the catalytic rate. The ability of...
Motif III in the putative helicases of superfamily 2 is highly conserved in both its sequence and it...
The Snf2 proteins, comprising 53 different enzymes in humans, belong to the SF2 family. Many Snf2 en...
Chromatin remodelers use the energy of ATP hydrolysis to regulate chromatin dynamics. Their impact f...
Yeast (Saccharomyces cerevisiae) SWI/SNF is a prototype for a large family of ATP-dependent chromati...
The yeast SWI2/SNF2 polypeptide is a subunit of the SWI/SNF protein complex that is required for man...
<div><p>Helicases are molecular motors that couple the energy of ATP hydrolysis to the unwinding of ...
Helicases are molecular motors that couple the energy of nucleoside triphosphate (NTP) hydrolysis to...
SummarySWI2/SNF2 ATPases remodel chromatin or other DNA:protein complexes by a poorly understood mec...
Helicases are molecular motors that couple the energy of ATP hydrolysis to the unwinding of structur...
AbstractA protein fold, six parallel β strands surrounding the central α helix, is likely to be a co...
An ATP-dependent DNA translocase domain consisting of seven conserved motifs is a general feature of...
The Snf2 proteins, comprising 53 different enzymes in humans, belong to the SF2 family. Many Snf2 en...
An ATP-dependent DNA translocase domain con-sisting of seven conserved motifs is a general feature o...
Helicases contain conserved motifs involved in ATP/magnesium/nucleic acid binding and in the mechani...
RNA helicases of the DEAD-box protein family are associated with nearly every processes that involve...
Motif III in the putative helicases of superfamily 2 is highly conserved in both its sequence and it...
The Snf2 proteins, comprising 53 different enzymes in humans, belong to the SF2 family. Many Snf2 en...
Chromatin remodelers use the energy of ATP hydrolysis to regulate chromatin dynamics. Their impact f...
Yeast (Saccharomyces cerevisiae) SWI/SNF is a prototype for a large family of ATP-dependent chromati...
The yeast SWI2/SNF2 polypeptide is a subunit of the SWI/SNF protein complex that is required for man...
<div><p>Helicases are molecular motors that couple the energy of ATP hydrolysis to the unwinding of ...
Helicases are molecular motors that couple the energy of nucleoside triphosphate (NTP) hydrolysis to...
SummarySWI2/SNF2 ATPases remodel chromatin or other DNA:protein complexes by a poorly understood mec...
Helicases are molecular motors that couple the energy of ATP hydrolysis to the unwinding of structur...
AbstractA protein fold, six parallel β strands surrounding the central α helix, is likely to be a co...
An ATP-dependent DNA translocase domain consisting of seven conserved motifs is a general feature of...
The Snf2 proteins, comprising 53 different enzymes in humans, belong to the SF2 family. Many Snf2 en...
An ATP-dependent DNA translocase domain con-sisting of seven conserved motifs is a general feature o...
Helicases contain conserved motifs involved in ATP/magnesium/nucleic acid binding and in the mechani...
RNA helicases of the DEAD-box protein family are associated with nearly every processes that involve...
Motif III in the putative helicases of superfamily 2 is highly conserved in both its sequence and it...
The Snf2 proteins, comprising 53 different enzymes in humans, belong to the SF2 family. Many Snf2 en...
Chromatin remodelers use the energy of ATP hydrolysis to regulate chromatin dynamics. Their impact f...