Distinct roles of two separablein vitroactivities of yeast Mre11 in mitotic and meiotic recombination
Open Access
- 2 November 1998
- journal article
- research article
- Published by Springer Nature in The EMBO Journal
- Vol. 17 (21), 6412-6425
- https://doi.org/10.1093/emboj/17.21.6412
Abstract
In Saccharomyces cerevisiae, Mre11 protein is involved in both double‐strand DNA break (DSB) repair and meiotic DSB formation. Here, we report the correlation of nuclease and DNA‐binding activities of Mre11 with its functions in DNA repair and meiotic DSB formation. Purified Mre11 bound to DNA efficiently and was shown to have Mn2+‐dependent nuclease activities. A point mutation in the N‐terminal phosphoesterase motif (Mre11D16A) resulted in the abolition of nuclease activities but had no significant effect on DNA binding. The wild‐type level of nuclease activity was detected in a C‐terminal truncated protein (Mre11ΔC49), although it had reduced DNA‐binding activity. Phenotypes of the corresponding mutations were also analyzed. The mre11D16A mutation conferred methyl methanesulfonate‐sensitivity to mitotic cells and caused the accumulation of unprocessed meiotic DSBs. The mre11ΔC49 mutant exhibited almost wild‐type phenotypes in mitosis. However, in meiosis, no DSB formation could be detected and an aberrant chromatin configuration was observed at DSB sites in the mre11ΔC49 mutant. These results indicate that Mre11 has two separable functional domains: the N‐terminal nuclease domain required for DSB repair, and the C‐terminal dsDNA‐binding domain essential to its meiotic functions such as chromatin modification and DSB formation.Keywords
This publication has 75 references indexed in Scilit:
- Double‐strand break repair mediated by DNA end‐joiningGenes to Cells, 1998
- Meiosis-Specific DNA Double-Strand Breaks Are Catalyzed by Spo11, a Member of a Widely Conserved Protein FamilyCell, 1997
- Involvement of the MRE2 gene of yeast in formation of meiosis‐specific double‐strand breaks and crossover recombination through RNA splicingGenes to Cells, 1997
- Communication between homologous chromosomes: genetic alterations at a nuclease‐hypersensitive site can alter mitotic chromatin structure at that site both in cis and in transGenes to Cells, 1996
- The sbcC and sbcD genes of Escherichia coli encode a nuclease involved in palindrome inviability and genetic recombinationGenes to Cells, 1996
- Isolation and Characterization of the Human MRE11 HomologueGenomics, 1995
- Structural and functional similarities between the SbcCD proteins of Escherichia coli and the RAD50 and MRE11 (RAD32) recombination and repair proteins of yeastMolecular Microbiology, 1995
- In vivo biochemistry: Physical monitoring of recombination induced by site‐specific endonucleasesBioEssays, 1995
- Electrophoretic transfer of proteins from polyacrylamide gels to nitrocellulose sheets: procedure and some applications.Proceedings of the National Academy of Sciences, 1979
- Cleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4Nature, 1970