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protein rad 50 binding mre 11 complex relapse domain repair atpase patient analysis diagnosis interaction leukemia nbs 1 dna binding function sample activity expression probe rad 50 complexes probe sets lymphoblastic leukemia precursor-b-all t-all study volume atp binding gene expression change double-strand diagnosis –relapse samples figure hopfner number cluster lymphoblastic atpase domains erasmus university rotterdam cycle stoichiometry cohesin preparation architecture fication dna-binding globular dna tethering mechanism dna double-strand group difference paull hirano wyman microarray association hydrolysis differentially break tethering acids research dimeric dsb repair structure identi leukemic clone nuclease chromosome jager component activation –relapse pathway 2001 b motif atp hydrolysis fjt staal
3 Most Recent Publications
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Genome-wide expression analysis of paired diagnosis-relapse samples in ALL indicates involvement of pathways related to DNA replication, cell cycle and DNA repair, independent of immune phenotype
(Article)
Staal, F.J.T. Ridder, D. de Szczepański, T. Schonewille, T. Linden, E. van der Wering, E.R. van Velden, V.H.J. van der Dongen, J.J.M. van |
2010-03-01
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RAD50 and NBS1 form a stable complex functional in DNA binding and tethering
(Article)
Linden, E. van der Sanchez, H. Kinoshita, E. Kanaar, R. Wyman, C. |
2009-04-02
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RAD50, an SMC family member with multiple roles in DNA break repair: How does ATP affect function?
(Article)
Kinoshita, E. Linden, E. van der Sanchez, H. Wyman, C. |
2009-02-01
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