The bacterial cytoplasm has glass-like properties and is fluidized by metabolic activity BR Parry, IV Surovtsev, MT Cabeen, CS O’Hern, ER Dufresne, ... Cell 156 (1), 183-194, 2014 | 805 | 2014 |
A constant size extension drives bacterial cell size homeostasis M Campos, IV Surovtsev, S Kato, A Paintdakhi, B Beltran, SE Ebmeier, ... Cell 159 (6), 1433-1446, 2014 | 512 | 2014 |
Spatial organization of the flow of genetic information in bacteria P Montero Llopis, AF Jackson, O Sliusarenko, I Surovtsev, J Heinritz, ... Nature 466 (7302), 77-81, 2010 | 412 | 2010 |
mTORC1 controls phase separation and the biophysical properties of the cytoplasm by tuning crowding M Delarue, GP Brittingham, S Pfeffer, IV Surovtsev, S Pinglay, ... Cell 174 (2), 338-349. e20, 2018 | 388 | 2018 |
Oufti: An integrated software package for high‐accuracy, high‐throughput quantitative microscopy analysis A Paintdakhi, B Parry, M Campos, I Irnov, J Elf, I Surovtsev, ... Molecular microbiology, 2015 | 388 | 2015 |
Evidence for a DNA-relay mechanism in ParABS-mediated chromosome segregation HC Lim, IV Surovtsev, BG Beltran, F Huang, J Bewersdorf, ... Elife 3, e02758, 2014 | 221 | 2014 |
Subcellular Organization: A Critical Feature of Bacterial Cell Replication IV Surovtsev, C Jacobs-Wagner Cell 172 (6), 1271-1293, 2018 | 162 | 2018 |
Individual Escherichia coli cells studied from light scattering with the scanning flow cytometer AN Shvalov, JT Soini, IV Surovtsev, GV Kochneva, GF Sivolobova, ... Cytometry Part A 41 (1), 41-45, 2000 | 77 | 2000 |
DNA-relay mechanism is sufficient to explain ParA-dependent intracellular transport and patterning of single and multiple cargos IV Surovtsev, M Campos, C Jacobs-Wagner Proceedings of the National Academy of Sciences 113 (46), E7268-E7276, 2016 | 70 | 2016 |
Interconnecting solvent quality, transcription, and chromosome folding in Escherichia coli Y Xiang, IV Surovtsev, Y Chang, SK Govers, BR Parry, J Liu, ... Cell 184 (14), 3626-3642. e14, 2021 | 61 | 2021 |
Kinetic modeling of the assembly, dynamic steady state, and contraction of the FtsZ ring in prokaryotic cytokinesis IV Surovtsev, JJ Morgan, PA Lindahl PLoS Comput Biol 4 (7), e1000102, 2008 | 58 | 2008 |
Particle classification from light scattering with the scanning flow cytometer AN Shvalov, IV Surovtsev, AV Chernyshev, JT Soini, VP Maltsev Cytometry Part A 37 (3), 215-220, 1999 | 57 | 1999 |
Kinetics of CO insertion and acetyl group transfer steps, and a model of the acetyl-CoA synthase catalytic mechanism X Tan, IV Surovtsev, PA Lindahl Journal of the American Chemical Society 128 (37), 12331-12338, 2006 | 53 | 2006 |
Replication fork passage drives asymmetric dynamics of a critical nucleoid‐associated protein in Caulobacter R Arias‐Cartin, GS Dobihal, M Campos, IV Surovtsev, B Parry, ... The EMBO Journal 36 (3), 301-318, 2017 | 48 | 2017 |
Mössbauer and EPR study of recombinant acetyl-CoA synthase from Moorella thermoacetica MR Bramlett, A Stubna, X Tan, IV Surovtsev, E Münck, PA Lindahl Biochemistry 45 (28), 8674-8685, 2006 | 43 | 2006 |
A framework for whole-cell mathematical modeling JJ Morgan, IV Surovtsev, PA Lindahl Journal of theoretical biology 231 (4), 581-596, 2004 | 37 | 2004 |
The Slow Mobility of the ParA Partitioning Protein Underlies Its Steady-State Patterning in Caulobacter IV Surovtsev, HC Lim, C Jacobs-Wagner Biophysical Journal 110 (12), 2790-2799, 2016 | 36 | 2016 |
A mathematical model of dispersion radical polymerization kinetics AV Chernyshev, AE Soini, IV Surovtsev, VP Maltsev, E Soini Journal of Polymer Science Part A: Polymer Chemistry 35 (9), 1799-1807, 1997 | 30 | 1997 |
Kinetics of the initial stage of immunoagglutionation studied with the scanning flow cytometer IV Surovtsev, MA Yurkin, AN Shvalov, VM Nekrasov, GF Sivolobova, ... Colloids and Surfaces B: Biointerfaces 32 (3), 245-255, 2003 | 20 | 2003 |
Whole-cell modeling framework in which biochemical dynamics impact aspects of cellular geometry IV Surovtsev, JJ Morgan, PA Lindahl Journal of Theoretical Biology 244 (1), 154-166, 2007 | 19 | 2007 |