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The purpose of the Manual on Uniform Traffic Studies (MUTS) is to establish minimum standards for conducting traffic engineering studies on roads under the jurisdiction of the Department of Transportation.
MutS-1 is a protein that recognizes and binds to mispaired nucleotides in DNA and initiates the post-replicative mismatch repair system. It has a complex structure with multiple domains and is involved in various DNA repair pathways and diseases.
MutS and MutL homologs are thought to form a stable complex to execute mismatch repair. This work shows that E. coli MutS only acts as a mismatch-dependent clamp-loader that assembles the MutL ...
Learn about the role and function of protein MutS in DNA mismatch repair, a process that corrects errors in DNA replication. Find chapters and articles from various scientific journals and books on this topic.
DNA mismatch repair is initiated by the recognition of mismatches by MutS proteins. The mechanism by which MutS searches for and recognizes mismatches and subsequently signals repair remains poorly understood. We used single-molecule analyses of ...
MutS, a DNA mismatch-binding protein, seems to be a promising tool for mutation detection. We present three MutS based approaches to the detection of point mutations: DNA retardation, protection of mismatched DNA against exonuclease digestion, and chimeric MutS proteins. DNA retardation in polyacryl …
MutS2 is a bacterial protein that belongs to the MutS-II family and recognizes DNA junctions to modulate recombination. This article reports the crystal structures of MutS2 and proposes a model for its DNA-binding mode and mechanism.
DNA mismatch repair (MMR) is a system for recognizing and repairing errors in DNA replication and recombination. Learn about the proteins, mechanisms, and functions of MMR in prokaryotes and eukaryotes.
DNA mismatch repair (MMR) relies on MutS and MutL ATPases for mismatch recognition and strand-specific nuclease recruitment to remove mispaired bases in daughter strands. However, whether the MutS ...
The structure captures MutS in the sliding clamp conformation, where tilting of the MutS subunits across each other pushes DNA into a new channel, and reorientation of the connector domain creates an interface for MutL with both MutS subunits.