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Actin nano-architecture of phagocytic podosomes.
- Published in:
- Nature Communications, 2022, v. 13, n. 1, p. 1, doi. 10.1038/s41467-022-32038-0
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- Article
Stochastic Methods for Inferring States of Cell Migration.
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- Frontiers in Physiology, 2020, v. 11, p. 1, doi. 10.3389/fphys.2020.00822
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- Article
An RNAi screen of Rho signalling networks identifies RhoH as a regulator of Rac1 in prostate cancer cell migration.
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- BMC Biology, 2018, v. 16, p. 1, doi. 10.1186/s12915-018-0489-4
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- Article
Ratiometric GPCR signaling enables directional sensing in yeast.
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- PLoS Biology, 2019, v. 17, n. 10, p. 1, doi. 10.1371/journal.pbio.3000484
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- Article
Role of competition between polarity sites in establishing a unique front.
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- eLife, 2015, p. 1, doi. 10.7554/eLife.11611
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- Article
Modeling capping protein FRAP and CALI experiments reveals in vivo regulation of actin dynamics.
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- Cytoskeleton, 2010, v. 67, n. 8, p. 519, doi. 10.1002/cm.20463
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- Article
MAPK feedback encodes a switch and timer for tunable stress adaptation in yeast.
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- Science Signaling, 2015, v. 8, n. 359, p. 1, doi. 10.1126/scisignal.2005774
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- Article
Spatio-Temporal Regulation of Rac1 Mobility by Actin Islands.
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- PLoS ONE, 2015, v. 10, n. 11, p. 1, doi. 10.1371/journal.pone.0143753
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- Article
In Silico Generation of Alternative Hypotheses UsingCausal Mapping (CMAP).
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- PLoS ONE, 2009, v. 4, n. 4, p. 1, doi. 10.1371/journal.pone.0005378
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- Article
Stochasticity in gene expression: from theories to phenotypes.
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- Nature Reviews Genetics, 2005, v. 6, n. 6, p. 451, doi. 10.1038/nrg1615
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- Article
Biochemical Network Stochastic Simulator (BioNetS): software for stochastic modeling of biochemical networks.
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- BMC Bioinformatics, 2004, v. 5, p. 24, doi. 10.1186/1471-2105-5-24
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- Article
Spatial models of pattern formation during phagocytosis.
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- PLoS Computational Biology, 2022, v. 18, n. 10, p. 1, doi. 10.1371/journal.pcbi.1010092
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- Article
A bottom-up approach to gene regulation.
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- Nature, 2006, v. 439, n. 7078, p. 856, doi. 10.1038/nature04473
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- Article
Positive roles for negative regulators in the mating response of yeast.
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- Molecular Systems Biology, 2012, v. 8, n. 1, p. 1, doi. 10.1038/msb.2012.18
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- Article
A Whole-Body Model for Glycogen Regulation Reveals a Critical Role for Substrate Cycling in Maintaining Blood Glucose Homeostasis.
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- PLoS Computational Biology, 2011, v. 7, n. 12, p. 1, doi. 10.1371/journal.pcbi.1002272
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- Article
A novel stochastic simulation approach enables exploration of mechanisms for regulating polarity site movement.
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- PLoS Computational Biology, 2021, v. 17, n. 7, p. 1, doi. 10.1371/journal.pcbi.1008525
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- Article
A predictive model of gene expression reveals the role of network motifs in the mating response of yeast.
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- Science Signaling, 2021, v. 14, n. 670, p. 1, doi. 10.1126/scisignal.abb5235
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- Article
Quantitative analysis of the yeast pheromone pathway.
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- Yeast, 2019, v. 36, n. 8, p. 495, doi. 10.1002/yea.3395
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- Article
An improved short-lived fluorescent protein transcriptional reporter for Saccharomyces cerevisiae.
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- Yeast, 2012, v. 29, n. 12, p. 519, doi. 10.1002/yea.2932
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- Article
Particle-based simulations reveal two positive feedback loops allow relocation and stabilization of the polarity site during yeast mating.
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- PLoS Computational Biology, 2023, v. 19, n. 10, p. 1, doi. 10.1371/journal.pcbi.1011523
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- Article
Testing the limits of gradient sensing.
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- PLoS Computational Biology, 2017, v. 13, n. 2, p. 1, doi. 10.1371/journal.pcbi.1005386
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- Article
Modeling the Excess Cell Surface Stored in a Complex Morphology of Bleb-Like Protrusions.
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- PLoS Computational Biology, 2016, v. 12, n. 3, p. 1, doi. 10.1371/journal.pcbi.1004841
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- Article
Multiscale Modeling of Bistability in the Yeast Polarity Circuit.
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- Cells (2073-4409), 2024, v. 13, n. 16, p. 1358, doi. 10.3390/cells13161358
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- Article
Emergent spatiotemporal dynamics of the actomyosin network in the presence of chemical gradients.
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- Integrative Biology, 2019, v. 11, n. 6, p. 280, doi. 10.1093/intbio/zyz023
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- Article
The Hepatic Transcriptome as a Window on Whole-Body Physiology and Pathophysiology.
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- Toxicologic Pathology, 2005, v. 33, n. 1, p. 136, doi. 10.1080/01926230590522149
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- Article
Complementary Roles for Toxicologic Pathology and Mathematics in Toxicogenomics, With Special Reference to Data Interpretation and Oscillatory Dynamics.
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- Toxicologic Pathology, 2004, v. 32, p. 13, doi. 10.1080/01926230490424789
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- Article
Complementary Roles for Toxicologic Pathology and Mathematics in Toxicogenomics, With Special Reference to Data Interpretation and Oscillatory Dynamics.
- Published in:
- Toxicologic Pathology, 2004, v. 32, n. 1S, p. 13, doi. 10.1080/01926230490424789
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- Article
Frequent Sampling Reveals Dynamic Responses by the Transcriptome to Routine Media Replacement in HepG2 Cells.
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- Toxicologic Pathology, 2003, v. 31, n. 4, p. 448, doi. 10.1080/01926230309719
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- Article
Corrigendum: Dissecting motility signaling through activation of specific Src-effector complexes.
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- Nature Chemical Biology, 2014, v. 10, n. 8, p. 692, doi. 10.1038/nchembio0814-692c
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- Article
Dissecting motility signaling through activation of specific Src-effector complexes.
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- Nature Chemical Biology, 2014, v. 10, n. 4, p. 286, doi. 10.1038/nchembio.1477
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- Article
Mechanistic models of PLC/PKC signaling implicate phosphatidic acid as a key amplifier of chemotactic gradient sensing.
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- PLoS Computational Biology, 2020, v. 16, n. 4, p. 1, doi. 10.1371/journal.pcbi.1007708
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- Article
Deep learning enables structured illumination microscopy with low light levels and enhanced speed.
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- Nature Communications, 2020, v. 11, n. 1, p. 1, doi. 10.1038/s41467-020-15784-x
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- Article
Yeast Dynamically Modify Their Environment to Achieve Better Mating Efficiency.
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- Science Signaling, 2011, v. 4, n. 186, p. 1, doi. 10.1126/scisignal.2001763
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Probing Pathways Periodically.
- Published in:
- Science Signaling, 2008, v. 1, n. 42, p. 1, doi. 10.1126/scisignal.142pe47
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- Article
Dose-Duration Reciprocity for G protein activation: Modulation of kinase to substrate ratio alters cell signaling.
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- PLoS ONE, 2017, v. 12, n. 12, p. 1, doi. 10.1371/journal.pone.0190000
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- Article
Principles that govern competition or co-existence in Rho-GTPase driven polarization.
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- PLoS Computational Biology, 2018, v. 14, n. 4, p. 1, doi. 10.1371/journal.pcbi.1006095
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- Article
Particle-based simulations of polarity establishment reveal stochastic promotion of turing pattern formation.
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- PLoS Computational Biology, 2018, v. 14, n. 3, p. 1, doi. 10.1371/journal.pcbi.1006016
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- Article