Naomi S Robertson

Affiliations: 
University of Cambridge, Cambridge, England, United Kingdom 
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"Naomi Robertson"
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Pantelejevs T, Zuazua-Villar P, Koczy O, et al. (2023) A recombinant approach for stapled peptide discovery yields inhibitors of the RAD51 recombinase. Chemical Science. 14: 13915-13923
Archibald LJ, Brown EA, Millard CJ, et al. (2022) Hydroxamic Acid-Modified Peptide Library Provides Insights into the Molecular Basis for the Substrate Selectivity of HDAC Corepressor Complexes. Acs Chemical Biology
Song Y, Dagil L, Fairall L, et al. (2020) Mechanism of Crosstalk between the LSD1 Demethylase and HDAC1 Deacetylase in the CoREST Complex. Cell Reports. 30: 2699-2711.e8
Robertson NS, Walsh SJ, Fowler E, et al. (2019) Macrocyclisation and functionalisation of unprotected peptides via divinyltriazine cysteine stapling. Chemical Communications (Cambridge, England)
Kelly RDW, Chandru A, Watson PJ, et al. (2018) Histone deacetylase (HDAC) 1 and 2 complexes regulate both histone acetylation and crotonylation in vivo. Scientific Reports. 8: 14690
Robertson NS, Spring DR. (2018) Using Peptidomimetics and Constrained Peptides as Valuable Tools for Inhibiting Protein⁻Protein Interactions. Molecules (Basel, Switzerland). 23
Iegre J, Gaynord JS, Robertson NS, et al. (2018) Two-Component Stapling of Biologically Active and Conformationally Constrained Peptides: Past, Present, and Future Advanced Therapeutics. 1: 1800052
Watson PJ, Millard CJ, Riley AM, et al. (2016) Insights into the activation mechanism of class I HDAC complexes by inositol phosphates. Nature Communications. 7: 11262
Aillard B, Robertson NS, Baldwin AR, et al. (2014) Robust asymmetric synthesis of unnatural alkenyl amino acids for conformationally constrained α-helix peptides. Organic & Biomolecular Chemistry. 12: 8775-82
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