Grzegorz Kubik

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2012-2016 Chemistry California Institute of Technology, Pasadena, CA 
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Gieß M, Muñoz-López Á, Buchmuller B, et al. (2019) Programmable Protein-DNA Cross-Linking for the Direct Capture and Quantification of 5-Formylcytosine. Journal of the American Chemical Society
Hammer SC, Kubik G, Watkins E, et al. (2017) Anti-Markovnikov alkene oxidation by metal-oxo-mediated enzyme catalysis. Science (New York, N.Y.). 358: 215-218
Flade S, Jasper J, Giess M, et al. (2017) The N6-Position of Adenine is a Blind Spot for TAL-Effectors that Enables Effective Binding of Methylated and Fluorophore-Labeled DNA. Acs Chemical Biology
Rathi P, Maurer S, Kubik G, et al. (2016) Isolation of Human Genomic DNA Sequences with Expanded Nucleobase Selectivity. Journal of the American Chemical Society
Kubik G, Summerer D. (2016) TALEored Epigenetics: A DNA-Binding Scaffold for Programmable Epigenome Editing and Analysis. Chembiochem : a European Journal of Chemical Biology. 17: 975-80
Kubik G, Summerer D. (2015) Deciphering Epigenetic Cytosine Modifications by Direct Molecular Recognition. Acs Chemical Biology. 10: 1580-9
Kubik G, Batke S, Summerer D. (2015) Programmable sensors of 5-hydroxymethylcytosine. Journal of the American Chemical Society. 137: 2-5
Kubik G, Summerer D. (2015) Achieving single-nucleotide resolution of 5-methylcytosine detection with TALEs. Chembiochem : a European Journal of Chemical Biology. 16: 228-31
Kubik G, Schmidt MJ, Penner JE, et al. (2014) Programmable and highly resolved in vitro detection of 5-methylcytosine by TALEs. Angewandte Chemie (International Ed. in English). 53: 6002-6
Kubik G, Schmidt MJ, Penner JE, et al. (2014) Programmierbare und hochaufgelöste In-vitro-Detektion von genomischem 5-Methylcytosin durch TALEs Angewandte Chemie. 126: 6113-6117
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