Mark E. Polinkovsky, Ph.D.
Affiliations: | 2012 | Physics (Biophysics) | University of California, San Diego, La Jolla, CA |
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General BiophysicsGoogle:
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Parents
Sign in to add mentorAlex Groisman | grad student | 2012 | UCSD | |
(Microfluidic Advantage: Novel Techniques for Protein Folding and Oxygen Control in Cell Cultures.) |
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Publications
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Brown JWP, Bauer A, Polinkovsky ME, et al. (2019) Single-molecule detection on a portable 3D-printed microscope. Nature Communications. 10: 5662 |
Gambin Y, Giles N, O'Carroll A, et al. (2017) Single-molecule fluorescence reveals the oligomerisation and folding steps driving the prion-like behaviour of ASC. Journal of Molecular Biology |
Gambin Y, Polinkovsky M, Francois B, et al. (2016) Confocal Spectroscopy to Study Dimerization, Oligomerization and Aggregation of Proteins: A Practical Guide. International Journal of Molecular Sciences. 17 |
Gagoski D, Polinkovsky ME, Mureev S, et al. (2016) Performance benchmarking of four cell-free protein expression systems. Biotechnology and Bioengineering. 113: 292-300 |
Polinkovsky ME, Gambin Y, Banerjee PR, et al. (2014) Ultrafast cooling reveals microsecond-scale biomolecular dynamics. Nature Communications. 5: 5737 |
Sierecki E, Stevers LM, Giles N, et al. (2014) Rapid mapping of interactions between Human SNX-BAR proteins measured in vitro by AlphaScreen and single-molecule spectroscopy. Molecular & Cellular Proteomics : McP. 13: 2233-45 |
Sierecki E, Giles N, Polinkovsky M, et al. (2014) A cell-free approach to accelerate the study of protein-protein interactions in vitro. Interface Focus. 3: 20130018 |
Gambin Y, Ariotti N, McMahon KA, et al. (2014) Single-molecule analysis reveals self assembly and nanoscale segregation of two distinct cavin subcomplexes on caveolae. Elife. 3: e01434 |
Polinkovsky ME, Gambin Y, Erickstad M, et al. (2012) Inverse Temperature Jump System to Study Fast Protein Folding Kinetics Biophysical Journal. 102: 448a-449a |
Adler M, Polinkovsky M, Gutierrez E, et al. (2010) Generation of oxygen gradients with arbitrary shapes in a microfluidic device. Lab On a Chip. 10: 388-91 |