
- Conserved Properties between Functionally Distinct MutS Homologs in Yeast*
- Copyright 0 1997 by the Genetics Society of America Genetic Interactions BetweenHOPI, RED1 and MEKI Suggest That MEKl
- 10.1101/gad.1727508Access the most recent version at doi: 2008 22: 2596-2600Genes & Dev.
- Copyright 2001 by the Genetics Society of America A Role for MMS4 in the Processing of Recombination Intermediates During
- MOLECULAR AND CELLULAR BIOLOGY, Aug. 2007, p. 54565467 Vol. 27, No. 15 0270-7306/07/$08.00 0 doi:10.1128/MCB.00416-07
- The Mus81 solution to resolution: generating meiotic crossovers without
- www.landesbioscience.com Cell Cycle 1 Cell Cycle 9:3, 1-2; February 1, 2010; 2010 Landes Bioscience
- Copyright 2010 by the Genetics Society of America DOI: 10.1534/genetics.110.117523
- Molecular Cell Regulation of Meiotic Recombination
- Molecular Biology of the Cell Vol. 19, 49684979, November 2008
- 10.1101/gad.1626408Access the most recent version at doi: 2008 22: 386-397Genes & Dev.
- Copyright 2006 by the Genetics Society of America DOI: 10.1534/genetics.106.064303
- Molecular Biology of the Cell Vol. 16, 58045818, December 2005
- Copyright 2004 by the Genetics Society of America DOI: 10.1534/genetics.104.033555
- Molecular Biology of the Cell Vol. 15, 1123, January 2004
- MOLECULAR AND CELLULAR BIOLOGY, 0270-7306/00/$04.00 0
- Red1p, a MEK1-dependent Phosphoprotein That Physically Interacts with Hop1p during Meiosis in Yeast*
- Copyright 0 1994 by the Genetics Society of America Insertional Mutations in the YeastHOPl Gene: Evidence for Multimeric
- Copyright 0 1989 by the Genetics Societyof America HOPI: a Yeast Meiotic Pairing Gene
- Copyright Q 1993 by the Genetics Society ofAmerica A Conditional Alleleof the Saccharomyces cerevisiaeHOPl Gene Is
- 10.1101/gad.9.14.1728Access the most recent version at doi: 1995 9: 1728-1739Genes Dev.
- Vol. 12, No. 9MOLECULAR AND CELLULAR BIOLOGY, Sept. 1992, p. 3706-3714 0270-7306/92/093706-09$02.00/0
- Copyright 2003 by the Genetics Society of America The Mus81/Mms4 Endonuclease Acts Independently of Double-Holliday