Motifs Q and I Are Required for ATP Hydrolysis but Not for ATP Binding in SWI2/SNF2 Proteins

  • Macmillan Nongkhlaw (125839)
  • Meghna Gupta (2085946)
  • Sneha Sudha Komath (56261)
  • Rohini Muthuswami (56262)
Publication date
May 2012

Abstract

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...

Extracted data

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