about
RTEL1 maintains genomic stability by suppressing homologous recombinationSingle-stranded DNA-binding protein hSSB1 is critical for genomic stabilityRAD-51-dependent and -independent roles of a Caenorhabditis elegans BRCA2-related protein during DNA double-strand break repair.DNA repair synthesis facilitates RAD52-mediated second-end capture during DSB repair.The breast cancer tumor suppressor BRCA2 promotes the specific targeting of RAD51 to single-stranded DNA.RadA protein from Archaeoglobus fulgidus forms rings, nucleoprotein filaments and catalyses homologous recombinationRTEL-1 enforces meiotic crossover interference and homeostasis.Structure and mechanism of action of the BRCA2 breast cancer tumor suppressorRole of BRCA2 in control of the RAD51 recombination and DNA repair protein.Double-strand break repair in human cells.Human DNA polymerase eta promotes DNA synthesis from strand invasion intermediates of homologous recombination.Nicked-site substrates for a serine recombinase reveal enzyme-DNA communications and an essential tethering role of covalent enzyme-DNA linkages.Conformational changes modulate the activity of human RAD51 protein.Tn3 resolvase catalyses multiple recombination events without intermediate rejoining of DNA ends.The efficiency of strand invasion by Escherichia coli RecA is dependent upon the length and polarity of ssDNA tailsSynapsis of Tn3 recombination sites: unpaired sites destabilize synapses by a partner exchange mechanism
P50
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P50
description
researcher
@en
wetenschapper
@nl
հետազոտող
@hy
name
Michael J McIlwraith
@ast
Michael J McIlwraith
@en
Michael J McIlwraith
@es
Michael J McIlwraith
@nl
type
label
Michael J McIlwraith
@ast
Michael J McIlwraith
@en
Michael J McIlwraith
@es
Michael J McIlwraith
@nl
prefLabel
Michael J McIlwraith
@ast
Michael J McIlwraith
@en
Michael J McIlwraith
@es
Michael J McIlwraith
@nl
P106
P31
P496
0000-0003-1559-4369