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One or more keywords matched the following items that are connected to Bishop, Douglas K.
Item TypeName
Concept Saccharomyces cerevisiae Proteins
Concept Saccharomyces cerevisiae
Academic Article Saccharomyces cerevisiae checkpoint genes MEC1, RAD17 and RAD24 are required for normal meiotic recombination partner choice.
Academic Article Crossover interference in Saccharomyces cerevisiae requires a TID1/RDH54- and DMC1-dependent pathway.
Academic Article Monitoring changes in the subcellular location of proteins in S. cerevisiae.
Academic Article Early decision; meiotic crossover interference prior to stable strand exchange and synapsis.
Academic Article Saccharomyces cerevisiae Dmc1 protein promotes renaturation of single-strand DNA (ssDNA) and assimilation of ssDNA into homologous super-coiled duplex DNA.
Academic Article Calcium ion promotes yeast Dmc1 activity via formation of long and fine helical filaments with single-stranded DNA.
Academic Article Red-Hed regulation: recombinase Rad51, though capable of playing the leading role, may be relegated to supporting Dmc1 in budding yeast meiosis.
Academic Article A comparative analysis of Dmc1 and Rad51 nucleoprotein filaments.
Academic Article The Mei5-Sae3 protein complex mediates Dmc1 activity in Saccharomyces cerevisiae.
Academic Article Tid1/Rdh54 promotes dissociation of Dmc1 from nonrecombinogenic sites on meiotic chromatin.
Academic Article Swi2/Snf2-related translocases prevent accumulation of toxic Rad51 complexes during mitotic growth.
Academic Article Rad51, the lead in mitotic recombinational DNA repair, plays a supporting role in budding yeast meiosis.
Academic Article Rad51 is an accessory factor for Dmc1-mediated joint molecule formation during meiosis.
Academic Article Multiple mechanisms of meiotic recombination.
Academic Article RecA homologs Dmc1 and Rad51 interact to form multiple nuclear complexes prior to meiotic chromosome synapsis.
Academic Article Rad52 associates with RPA and functions with rad55 and rad57 to assemble meiotic recombination complexes.
Academic Article High copy number suppression of the meiotic arrest caused by a dmc1 mutation: REC114 imposes an early recombination block and RAD54 promotes a DMC1-independent DSB repair pathway.
Academic Article Assembly of RecA-like recombinases: distinct roles for mediator proteins in mitosis and meiosis.
Academic Article Heterodimeric complexes of Hop2 and Mnd1 function with Dmc1 to promote meiotic homolog juxtaposition and strand assimilation.
Academic Article Synthesis-dependent strand annealing in meiosis.
Academic Article Gradual implementation of the meiotic recombination program via checkpoint pathways controlled by global DSB levels.
Academic Article DNA damage response clamp 9-1-1 promotes assembly of ZMM proteins for formation of crossovers and synaptonemal complex.
Academic Article Meiotic crossover control by concerted action of Rad51-Dmc1 in homolog template bias and robust homeostatic regulation.
Academic Article The third exon of the budding yeast meiotic recombination gene HOP2 is required for calcium-dependent and recombinase Dmc1-specific stimulation of homologous strand assimilation.
Academic Article Caffeine impairs resection during DNA break repair by reducing the levels of nucleases Sae2 and Dna2.
Academic Article Caffeine inhibits gene conversion by displacing Rad51 from ssDNA.
Academic Article Surface Spreading and Immunostaining of Yeast Chromosomes.
Academic Article Small Rad51 and Dmc1 Complexes Often Co-occupy Both Ends of a Meiotic DNA Double Strand Break.
Academic Article Purification of Saccharomyces cerevisiae Homologous Recombination Proteins Dmc1 and Rdh54/Tid1 and a Fluorescent D-Loop Assay.
Academic Article RPA resolves conflicting activities of accessory proteins during reconstitution of Dmc1-mediated meiotic recombination.
Academic Article Distinct Functions in Regulation of Meiotic Crossovers for DNA Damage Response Clamp Loader Rad24(Rad17) and Mec1(ATR) Kinase.
Academic Article A mutant form of Dmc1 that bypasses the requirement for accessory protein Mei5-Sae3 reveals independent activities of Mei5-Sae3 and Rad51 in Dmc1 filament stability.
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  • Saccharomyces