|
Name and surname:
|
RNDr. Ing. Milan Melicherčík, PhD.
|
|
Document type:
|
Research/art/teacher profile of a person
|
|
The name of the university:
|
Comenius University Bratislava
|
|
The seat of the university:
|
Šafárikovo námestie 6, 818 06 Bratislava
|
| III.a - Occupation-position | III.b - Institution | III.c - Duration |
|---|---|---|
| researcher | Faculty of Mathematics, Physics and Informatics, Comenius University in Bratislava | 2005-2006 |
| researcher | Institute of physical biology, University of South Bohemia, Czech Republic | 2007-2010 |
| researcher | Institute of system biology and ecology, Czech Academy of Sciences, Czech Republic | 2007-2010 |
| researcher | Institute of Microbiology, Czech Academy of Sciences, Czech Republic | 2011-2017 |
| assistant professor | Faculty of Mathematics, Physics and Informatics, Comenius University in Bratislava | 2010-still |
| V.1.a - Name of the profile course | V.1.b - Study programme | V.1.c - Degree | V.1.d - Field of study |
|---|---|---|---|
| Processing of Nuclear Physics Data | Nuclear and Subnuclear Physics | II. | Physics |
| V.5.a - Name of the course | V.5.b - Study programme | V.5.c - Degree | V.5.d - Field of study |
|---|---|---|---|
| Computer modeling | Biomedical Physics | I. | Physics |
| Molecular Dynamics Simulations | Biomedical Physics | II | Physics |
| Chemical physics | Physics | I. | Physics |
| Introduction to Programming | Biomedical Physics | I. | Physics |
| Introduction to Biostatistics and Probability | Medical Biology | I. | Biology |
Ettrich R., Melichercik M., Teisinger J., Ettrichova O., Krumscheid R., Hofbauerova K., Kvasnicka P., Schoner W., Amler E.:Three-dimensional structure of the large cytoplasmic H4-H5 loop of Na+/K+-ATPase deduced by restraint-based comparative modeling shows only one ATP binding site (2001) Journal of Molecular Modeling, 7 (6), pp. 184 - 192, Cited 27 times. DOI: 10.1007/s008940100031
Klbik I., Čechová K., Milovská S., Rusnák J., Vlasáč J., Melicherčík M., Mat'Ko I., Lakota J., Šauša O.:Cryoprotective Mechanism of DMSO Induced by the Inhibitory Effect on Eutectic NaCl Crystallization (2022) Journal of Physical Chemistry Letters, 13 (48), pp. 11153 - 11159, Cited 14 times. DOI: 10.1021/acs.jpclett.2c03003
Strawn R., Melichercik M., Green M., Stockner T., Carey J., Ettrich R.:Symmetric allosteric mechanism of hexameric Escherichia coli arginine repressor exploits competition between L-arginine ligands and resident arginine residues (2010) PLoS Computational Biology, 6 (6), pp. 1 - 12, Cited 15 times. DOI: 10.1371/journal.pcbi.1000801
Strawn R., Stockner T., Melichercik M., Jin L., Xue W.-F., Carey J., Ettrich R.:Synergy of molecular dynamics and isothermal titration calorimetry in studies of allostery (2011) Methods in Enzymology, 492, pp. 151 - 188, Cited 8 times. DOI: 10.1016/B978-0-12-381268-1.00017-3
Skúpa K., Melicherčík M., Urban J.:A computational study of the interaction between dopamine and DNA/RNA nucleosides
(2015) Journal of Molecular Modeling, 21 (9), art. no. 241, Cited 5 times. DOI: 10.1007/s00894-015-2788-9
Klbik I., Čechová K., Milovská S., Rusnák J., Vlasáč J., Melicherčík M., Mat'Ko I., Lakota J., Šauša O.:Cryoprotective Mechanism of DMSO Induced by the Inhibitory Effect on Eutectic NaCl Crystallization (2022) Journal of Physical Chemistry Letters, 13 (48), pp. 11153 - 11159, Cited 14 times. DOI: 10.1021/acs.jpclett.2c03003
Pandey S.K., Melichercik M., Rěha D., Ettrich R.H., Carey J.:Conserved dynamic mechanism of allosteric response to l-arg in divergent bacterial arginine repressors (2020) Molecules, 25 (9), art. no. 2247, Cited 4 times. DOI: 10.3390/molecules25092247
Michael A.J.:Biosynthesis of polyamines and polyamine-containing molecules (2016) Biochemical Journal, 473 (15), pp. 2315 - 2329, Cited 163 times. DOI: 10.1042/BCJ20160185
Bervoets I., Charlier D.:Diversity, versatility and complexity of bacterial gene regulation mechanisms: Opportunities and drawbacks for applications in synthetic biology (2019) FEMS Microbiology Reviews, 43 (3), pp. 304 - 339, Cited 130 times. DOI: 10.1093/femsre/fuz001
Charlier D., Bervoets I.:Regulation of arginine biosynthesis, catabolism and transport in Escherichia coli (2019) Amino Acids, 51 (8), pp. 1103 - 1127, Cited 94 times. DOI: 10.1007/s00726-019-02757-8
Phanchai W., Srikulwong U., Chompoosor A., Sakonsinsiri C., Puangmali T.:Insight into the Molecular Mechanisms of AuNP-Based Aptasensor for Colorimetric Detection: A Molecular Dynamics Approach (2018) Langmuir, 34 (21), pp. 6161 - 6169, Cited 58 times. DOI: 10.1021/acs.langmuir.8b00701
Al-Otaibi J.S., Teesdale Spittle P., El Gogary T.M.:Interaction of anthraquinone anti-cancer drugs with DNA:Experimental and computational quantum chemical study (2017) Journal of Molecular Structure, 1127, pp. 751 - 760, Cited 45 times. DOI: 10.1016/j.molstruc.2016.08.007
Structure and reactivity of aptamers and selected molecular systems in pathological form of prions, APVV-16-0600, team researcher
Non-specific physical interactions of nanoparticles investigated for medical use - in vitro impact on hemocoagulant, viscoelastic and flow properties of blood, VEGA 1/0634/25, team researcher
Training of clinical and biomedical physicists - implementation of new biomedicine technologies and active learning methods, KEGA 041UK-4/2020, team researcher
Multidimensional study of fluorescence of biologicaly relevant molecular complexes, VEGA 1/0737/17, team researcher
| VIII.a - Name of the institution | VIII.b - Address of the institution | VIII.c - Duration (indicate the duration of stay) | VIII.d - Mobility scheme, employment contract, other (describe) |
|---|---|---|---|
| Department of Chemistry, Princeton University | 360 Frick Laboratory Princeton, NJ 08544 | july 2009 | research |