Michał Górka

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Education:

2014 -             Ph. D student, Faculty of Physics at the University of Warsaw

2014    Master's degree in Physics (Biophysics), Faculty of Physics at the University of Warsaw

Publications:

Stachelska-Wierzchowska, A., Wierzchowski, J., Górka, M., Bzowska, A., Stolarski, R., & Wielgus-Kutrowska, B. (2020). Tricyclic Nucleobase Analogs and Their Ribosides as Substrates and Inhibitors of Purine-Nucleoside Phosphorylases III. Aminopurine DerivativesMolecules25(3), 681.

Stachelska-Wierzchowska, A., Wierzchowski, J., Górka, M., Bzowska, A., & Wielgus-Kutrowska, B. (2019). Tri-Cyclic Nucleobase Analogs and Their Ribosides as Substrates of Purine-Nucleoside Phosphorylases. II Guanine and Isoguanine DerivativesMolecules24(8), 1493.

Spronk, C. A., Żerko, S., Górka, M., Koźmiński, W., Bardiaux, B., Zambelli, B., ... & Johnson, R. C. (2018). Structure and dynamics of Helicobacter pylori nickel-chaperone HypA: an integrated approach using NMR spectroscopy, functional assays and computational toolsJBIC Journal of Biological Inorganic Chemistry23(8), 1309-1330.

Zieminska, E., Toczylowska, B., Diamandakis, D., Hilgier, W., Filipkowski, R. K., Polowy, R., ... & Lazarewicz, J. W. (2018). Glutamate, glutamine and GABA levels in rat brain measured using MRS, HPLC and NMR methods in study of two models of autismFrontiers in molecular neuroscience11, 418.

Kosiński, K., Stanek, J., Górka, M. J., Żerko, S., & Koźmiński, W. (2017). Reconstruction of non-uniformly sampled five-dimensional NMR spectra by signal separation algorithmJournal of biomolecular NMR68(2), 129-138.

Żerko, S., Byrski, P., Włodarczyk-Pruszyński, P., Górka, M., Ledolter, K., Masliah, E., ... & Koźmiński, W. (2016). Five and four dimensional experiments for robust backbone resonance assignment of large intrinsically disordered proteins: application to Tau3x proteinJournal of biomolecular NMR65(3-4), 193-203.

Modrak-Wojcik, A., Gorka, M., Niedzwiecka, K., Zdanowski, K., Zuberek, J., Niedzwiecka, A., & Stolarski, R. (2013). Eukaryotic translation initiation is controlled by cooperativity effects within ternary complexes of 4E-BP1, eIF4E, and the mRNA 5′ capFEBS letters587(24), 3928-3934.

 

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