The crystal structure of DNA mismatch repair protein MutS binding to a G·T mismatch
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- 12 October 2000
- journal article
- research article
- Published by Springer Nature in Nature
- Vol. 407 (6805) , 711-717
- https://doi.org/10.1038/35037523
Abstract
DNA mismatch repair ensures genomic integrity on DNA replication. Recognition of a DNA mismatch by a dimeric MutS protein initiates a cascade of reactions and results in repair of the newly synthesized strand; however, details of the molecular mechanism remain controversial. Here we present the crystal structure at 2.2 Å of MutS from Escherichia coli bound to a G·T mismatch. The two MutS monomers have different conformations and form a heterodimer at the structural level. Only one monomer recognizes the mismatch specifically and has ADP bound. Mismatch recognition occurs by extensive minor groove interactions causing unusual base pairing and kinking of the DNA. Nonspecific major groove DNA-binding domains from both monomers embrace the DNA in a clamp-like structure. The interleaved nucleotide-binding sites are located far from the DNA. Mutations in human MutSα (MSH2/MSH6) that lead to hereditary predisposition for cancer, such as hereditary non-polyposis colorectal cancer, can be mapped to this crystal structure.Keywords
This publication has 49 references indexed in Scilit:
- Heteroduplex DNA and ATP induced conformational changes of a MutS mismatch repair protein from Thermus aquaticusBiochemical Journal, 2000
- Modulation of MutS ATP Hydrolysis by DNA CofactorsBiochemistry, 2000
- ATP-hydrolysis-dependent conformational switch modulates the stability of MutS-mismatch complexesNucleic Acids Research, 2000
- Mammalian DNA Mismatch RepairAnnual Review of Genetics, 1999
- Eukaryotic DNA mismatch repairCurrent Opinion in Genetics & Development, 1999
- Nucleotide-promoted Release of hMutSα from Heteroduplex DNA Is Consistent with an ATP-dependent Translocation MechanismJournal of Biological Chemistry, 1998
- DNA-dependent Activation of the hMutSα ATPaseJournal of Biological Chemistry, 1998
- The Human Mismatch Recognition Complex hMSH2-hMSH6 Functions as a Novel Molecular SwitchCell, 1997
- MutS mediates heteroduplex loop formation by a translocation mechanismThe EMBO Journal, 1997
- MISMATCH REPAIR IN REPLICATION FIDELITY, GENETIC RECOMBINATION, AND CANCER BIOLOGYAnnual Review of Biochemistry, 1996