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PMID: 20138591 Published · ppublish English

Functional residues on the surface of the N-terminal domain of yeast Pms1.

DNA repair ·Vol. 9 ·No. 4 ·2010-06-29

Arana Mercedes E, Holmes Shannon F, Fortune John M, Moon Andrea F, Pedersen Lars C, Kunkel Thomas A

Abstract

Saccharomyces cerevisiae MutLalpha is a heterodimer of Mlh1 and Pms1 that participates in DNA mismatch repair (MMR). Both proteins have weakly conserved C-terminal regions (CTDs), with the CTD of Pms1 harboring an essential endonuclease activity. These proteins also have conserved N-terminal domains (NTDs) that bind and hydrolyze ATP and bind to DNA. To better understand Pms1 functions and potential interactions with DNA and/or other proteins, we solved the 2.5A crystal structure of yeast Pms1 (yPms1) NTD. The structure is similar to the homologous NTDs of Escherichia coli MutL and human PMS2, including the site involved in ATP binding and hydrolysis. The structure reveals a number of conserved, positively charged surface residues that do not interact with other residues in the NTD and are therefore candidates for interactions with DNA, with the CTD and/or with other proteins. When these were replaced with glutamate, several replacements resulted in yeast strains with elevated mutation rates. Two replacements also resulted in NTDs with decreased DNA binding affinity in vitro, suggesting that these residues contribute to DNA binding that is important for mismatch repair. Elevated mutation rates also resulted from surface residue replacements that did not affect DNA binding, suggesting that these conserved residues serve other functions, possibly involving interactions with other MMR proteins.

Article Info
Journal
DNA repair
Abbr.
DNA Repair (Amst)
Published
2010-06-29
Indexed
2010-03-29
Updated
2016-11-25
Language
English
Country/Region
Netherlands
NLM ID
101139138
Analysis Services
Analysis Services

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