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Sign in to add traineeCorrado Santocanale | grad student | (Mycotree) | |
Niels Mailand | post-doc | 2004-2005 | Clare Hall Laboratories (Chemistry Tree) |
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Publications
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Sánchez H, Liu Z, van Veen E, et al. (2023) A chromatinized origin reduces the mobility of ORC and MCM through interactions and spatial constraint. Nature Communications. 14: 6735 |
Ramírez Montero D, Sánchez H, van Veen E, et al. (2023) Nucleotide binding halts diffusion of the eukaryotic replicative helicase during activation. Nature Communications. 14: 2082 |
Minamino M, Bouchoux C, Canal B, et al. (2023) A replication fork determinant for the establishment of sister chromatid cohesion. Cell |
McClure AW, Canal B, Diffley JFX. (2022) A DNA replication fork-centric view of the budding yeast DNA damage response. Dna Repair. 119: 103393 |
Lewis JS, Gross MH, Sousa J, et al. (2022) Mechanism of replication origin melting nucleated by CMG helicase assembly. Nature. 606: 1007-1014 |
Costa A, Diffley JFX. (2022) The Initiation of Eukaryotic DNA Replication. Annual Review of Biochemistry |
Philip J, Örd M, Silva A, et al. (2022) Cdc6 is sequentially regulated by PP2A-Cdc55, Cdc14, and Sic1 for origin licensing in . Elife. 11 |
Greiwe JF, Miller TCR, Locke J, et al. (2021) Structural mechanism for the selective phosphorylation of DNA-loaded MCM double hexamers by the Dbf4-dependent kinase. Nature Structural & Molecular Biology |
Posse V, Johansson E, Diffley JFX. (2021) Eukaryotic DNA replication with purified budding yeast proteins. Methods in Enzymology. 661: 1-33 |
McClure A, Diffley J. (2021) Rad53 checkpoint kinase regulation of DNA replication fork rate via Mrc1 phosphorylation. Elife. 10 |