Kiran Kumar

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2015- Chemistry University of Oxford, Oxford, United Kingdom 
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Belle R, Kamps JJAG, Poater J, et al. (2022) Reading and erasing of the phosphonium analogue of trimethyllysine by epigenetic proteins. Communications Chemistry. 5: 27
Belle R, Kamps JJAG, Poater J, et al. (2022) Reading and erasing of the phosphonium analogue of trimethyllysine by epigenetic proteins. Communications Chemistry. 5
Pieters BJGE, Wuts MHM, Poater J, et al. (2020) Mechanism of biomolecular recognition of trimethyllysine by the fluorinated aromatic cage of KDM5A PHD3 finger. Communications Chemistry. 3: 69
Hintzen JCJ, Poater J, Kumar K, et al. (2020) Comparison of Molecular Recognition of Trimethyllysine and Trimethylthialysine by Epigenetic Reader Proteins. Molecules (Basel, Switzerland). 25
Lohans CT, Chan HTH, Malla TR, et al. (2018) Non-Hydrolytic β-Lactam Antibiotic Fragmentation by L,D-Transpeptidases and Serine β-Lactamase Cysteine Variants. Angewandte Chemie (International Ed. in English)
Kumar K, Woo SM, Siu T, et al. (2018) Cation-π interactions in protein-ligand binding: theory and data-mining reveal different roles for lysine and arginine. Chemical Science. 9: 2655-2665
Al Temimi AHK, Belle R, Kumar K, et al. (2018) Recognition of shorter and longer trimethyllysine analogues by epigenetic reader proteins. Chemical Communications (Cambridge, England)
Lohans CT, van Groesen E, Kumar K, et al. (2017) A New Mechanism for β-Lactamases: Class D Enzymes Degrade 1β-Methyl Carbapenems via Lactone Formation. Angewandte Chemie (International Ed. in English)
Belle R, Al Temimi AHK, Kumar K, et al. (2017) Investigating d-lysine stereochemistry for epigenetic methylation, demethylation and recognition. Chemical Communications (Cambridge, England). 53: 13264-13267
Cortopassi WA, Kumar K, Paton RS. (2016) Cation-π interactions in CREBBP bromodomain inhibition: an electrostatic model for small-molecule binding affinity and selectivity. Organic & Biomolecular Chemistry
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