Oleg A. Igoshin, Ph.D.
Institution:
University of California, Berkeley, Berkeley, CA, United StatesArea:
protein motors, eukaryotic and prokaryotic cell motility, membrane geometry and protein organization and pattern formation in neural systemsGoogle:
"Oleg Igoshin"Mean distance: 10.88 | S | N | B | C | P |
Parents
Sign in to add mentorGeorge F. Oster | grad student | 2004 | UC Berkeley | |
(Modeling pattern formation in myxobacteria.) |
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Publications
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Molinari S, Shis DL, Bhakta SP, et al. (2019) A synthetic system for asymmetric cell division in Escherichia coli. Nature Chemical Biology |
Igoshin OA, Chen J, Xing J, et al. (2019) Biophysics at the coffee shop: lessons learned working with George Oster. Molecular Biology of the Cell. 30: 1882-1889 |
Castillo-Hair SM, Baerman EA, Fujita M, et al. (2019) Optogenetic control of Bacillus subtilis gene expression. Nature Communications. 10: 3099 |
Saha S, Patra P, Igoshin O, et al. (2019) Systematic analysis of the Myxococcus xanthus developmental gene regulatory network supports posttranslational regulation of FruA by C-signaling. Molecular Microbiology |
Zhang Z, Igoshin OA, Cotter CR, et al. (2018) Agent-Based Modeling Reveals Possible Mechanisms for Observed Aggregation Cell Behaviors. Biophysical Journal |
Shis DL, Bennett MR, Igoshin OA. (2018) Dynamics of Bacterial Gene Regulatory Networks. Annual Review of Biophysics |
Fan Y, Evans CR, Barber KW, et al. (2017) Heterogeneity of Stop Codon Readthrough in Single Bacterial Cells and Implications for Population Fitness. Molecular Cell |
Winkle J, Igoshin OA, Bennett M, et al. (2017) Modeling mechanical interactions in growing populations of rod-shaped bacteria. Physical Biology |
Cotter CR, Schüttler HB, Igoshin OA, et al. (2017) Data-driven modeling reveals cell behaviors controlling self-organization during Myxococcus xanthus development. Proceedings of the National Academy of Sciences of the United States of America |
Narula J, Fujita M, Igoshin OA. (2016) Functional requirements of cellular differentiation: lessons from Bacillus subtilis. Current Opinion in Microbiology. 34: 38-46 |