Genes & Development · 1998 · 124 citations · 48 references
GeneticsMolecular GeneticsCytoskeletonCell CycleSynaptonemal Complex MorphogenesisCell SignalingCell DivisionMedicineMek1 ProteinMeiosisNuclear OrganizationChromosomal RearrangementSister-chromatid CohesionCell BiologyChromatinDevelopmental BiologySignal TransductionChromatin RemodelingMeiotic Chromosome CoresChromosome BiologyMek1 Gene ProductMeiotic Chromosomal Protein
Development of yeast meiotic chromosome cores into full-length synaptonemal complexes requires the MEK1 gene product, a meiosis-specific protein kinase homolog. The Mek1 protein associates with meiotic chromosomes and colocalizes with the Red1 protein, which is a component of meiotic chromosome cores. Mek1 and Red1 interact physically in meiotic cells, as demonstrated by coimmunoprecipitation and the two-hybrid protein system. Hop1, another protein associated with meiotic chromosome cores, also interacts with Mek1 but only in the presence of Red1. Red1 displays Mek1-dependent phosphorylation, both in vitro and in vivo, and Mek1 kinase activity is necessary for Mek1 function in vivo. Fluorescent in situ hybridization analysis indicates that Mek1-mediated phosphorylation of Red1 is required for meiotic sister-chromatid cohesion, raising the possibility that cohesion is regulated by protein phosphorylation.
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Harry Towbin, T. Staehelin, J. Gordon · Proceedings of the National Academy of Sciences · 1979 · 53.8K citations · Full text
Immunocytochemical Technique, Glycobiology, Polyacrylamide Gels +19
Studies on the transformation of intact yeast cells by the LiAc/SS‐DNA/PEG procedure
R. Daniel Gietz, Robert H. Schiestl, Andrew Willems et al. · Yeast · 1995 · 2K citations