Adam B. Robertson, Ph.D.

Affiliations: 
2007 Biology University of North Carolina, Chapel Hill, Chapel Hill, NC 
Area:
Molecular Biology, Biochemistry
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Parents

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Steven W. Matson grad student 2007 UNC Chapel Hill
 (MutL involvement in two DNA repair pathways: Methyl-directed mismatch repair and very short patch repair.)
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Publications

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Vander Zanden CM, Czarny RS, Ho EN, et al. (2020) Structural adaptation of vertebrate endonuclease G for 5-hydroxymethylcytosine recognition and function. Nucleic Acids Research
Prikrylova T, Robertson J, Ferrucci F, et al. (2019) 5-hydroxymethylcytosine Marks Mammalian Origins Acting as a Barrier to Replication. Scientific Reports. 9: 11065
Klungland A, Robertson AB. (2016) Oxidized C5-Methyl Cytosine Bases in DNA: 5-Hydroxymethylcytosine; 5-Formylcytosine; and 5-Carboxycytosine. Free Radical Biology & Medicine
Vander Zanden CM, Rowe RK, Broad AJ, et al. (2016) The effect of hydroxymethylcytosine on the structure and stability of Holliday junctions. Biochemistry
Weber AR, Krawczyk C, Robertson AB, et al. (2016) Biochemical reconstitution of TET1-TDG-BER-dependent active DNA demethylation reveals a highly coordinated mechanism. Nature Communications. 7: 10806
Robertson AB, Robertson J, Fusser M, et al. (2014) Endonuclease G preferentially cleaves 5-hydroxymethylcytosine-modified DNA creating a substrate for recombination. Nucleic Acids Research. 42: 13280-93
Robertson AB, Dahl JA, Klungland A. (2014) DNA metabolism: bases of DNA repair and regulation. Nature Chemical Biology. 10: 487-8
Robertson AB, Dahl JA, Klungland A. (2014) Erratum: Bases of DNA repair and regulation Nature Chemical Biology. 10: 1074-1074
Robertson AB, Matson SW. (2012) Reconstitution of the very short patch repair pathway from Escherichia coli. The Journal of Biological Chemistry. 287: 32953-66
Robertson AB, Dahl JA, Ougland R, et al. (2012) Pull-down of 5-hydroxymethylcytosine DNA using JBP1-coated magnetic beads. Nature Protocols. 7: 340-50
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