Molecular Analysis of the SNF2/SWI2 Protein Family Member MOT1, an ATP-Driven Enzyme That Dissociates TATA-Binding Protein from DNA
Open Access
- 1 August 1997
- journal article
- research article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 17 (8) , 4842-4851
- https://doi.org/10.1128/mcb.17.8.4842
Abstract
MOT1 is an essential Saccharomyces cerevisiae protein and a member of the SNF2/SWI2 family of ATPases. MOT1 functions by removing TATA-binding protein (TBP) from DNA, and as a consequence, MOT1 can regulate transcription both in vitro and in vivo. Here we describe the in vivo and in vitro activities of MOT1 deletion and substitution mutants. The results indicate that MOT1 is targeted to TBP both in vitro and in vivo via amino acids in its nonconserved N terminus. The conserved C-terminal ATPase of MOT1 appears to contribute to TBP-DNA complex recognition in the absence of ATP, but it appears to function primarily during the actual ATP-dependent dissociation reaction. Chimeric proteins in which homologous portions of SNF2/SWI2 have been substituted for the MOT1 ATPase can bind to TBP-DNA complexes but fail to dissociate these complexes in the presence of ATP, suggesting that the specificity of action of MOT1 is also conferred by the C-terminal ATPase. ATPase assays demonstrate that the MOT1 ATPase is activated by TBP. Thus, MOT1 undergoes at least two conformational changes: (i) an allosteric effect of TBP that mediates the activation of the MOT1 ATPase and (ii) an ATP-driven "power stroke" that causes TBP-DNA complex dissociation. These results provide a general framework for understanding how members of the SNF2/SWI2 protein family use ATP to modulate protein-DNA interactions to regulate many diverse processes in cells.Keywords
This publication has 39 references indexed in Scilit:
- RAD26, the Yeast Homolog of Human Cockayne's Syndrome Group B Gene, Encodes a DNA-dependent ATPaseJournal of Biological Chemistry, 1996
- Crystal structure of the kinesin motor domain reveals a structural similarity to myosinNature, 1996
- Targeting of Motor ProteinsScience, 1996
- Epigenetic effects on yeast transcription caused by mutations in an actin-related protein present in the nucleus.Genes & Development, 1996
- Nucleosome disruption and enhancement of activator binding by a human SW1/SNF complexNature, 1994
- NOT1(CDC39), NOT2(CDC36), NOT3, and NOT4 encode a global-negative regulator of transcription that differentially affects TATA-element utilization.Genes & Development, 1994
- Kinetic Parameters of the Translocation of Bacteriophage T4 Gene 41 Protein Helicase on Single-stranded DNAJournal of Molecular Biology, 1994
- BRG1 contains a conserved domain of the SWI2/SNF2 family necessary for normal mitotic growth and transcriptionNature, 1993
- An ATP-dependent inhibitor of TBP binding to DNA.Genes & Development, 1993
- Unscrambling the puzzle of biological machines: The importance of the detailsCell, 1992