Mechanical regulation of photosynthesis in cyanobacteria
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Jeffrey C. Cameron | D. Bortz | J. W. Tay | J. Meehl | Sabina Altus | Kristin A. Moore | Evan B. Johnson | J. Cameron
[1] T. Hwa,et al. Spatiotemporal establishment of dense bacterial colonies growing on hard agar , 2019, eLife.
[2] Susan E. Cohen,et al. Phototaxis in a wild isolate of the cyanobacterium Synechococcus elongatus , 2018, Proceedings of the National Academy of Sciences.
[3] W. Vollmer,et al. Mechanical interactions between bacteria and hydrogels , 2018, Scientific Reports.
[4] G. Jensen,et al. Selective Permeability of Carboxysome Shell Pores to Anionic Molecules , 2018, bioRxiv.
[5] Ryan L. Clark,et al. Light-optimized growth of cyanobacterial cultures: Growth phases and productivity of biomass and secreted molecules in light-limited batch growth. , 2018, Metabolic engineering.
[6] Scott T. Retterer,et al. Analysis of Factors Limiting Bacterial Growth in PDMS Mother Machine Devices , 2018, Front. Microbiol..
[7] C. Kerfeld,et al. Bacterial microcompartments. , 2010, Annual review of microbiology.
[8] F. Thompson,et al. Ecogenomics and Taxonomy of Cyanobacteria Phylum , 2017, Front. Microbiol..
[9] C. Mullineaux,et al. Light-controlled motility in prokaryotes and the problem of directional light perception , 2017, FEMS microbiology reviews.
[10] Bruno M. C. Martins,et al. Cell size control driven by the circadian clock and environment in cyanobacteria , 2017, Proceedings of the National Academy of Sciences.
[11] Joel M. Kralj,et al. Voltage-gated calcium flux mediates Escherichia coli mechanosensation , 2017, Proceedings of the National Academy of Sciences.
[12] A. Fernie,et al. A Novel Mechanism, Linked to Cell Density, Largely Controls Cell Division in Synechocystis1[OPEN] , 2017, Plant Physiology.
[13] D. Nakane,et al. Asymmetric distribution of type IV pili triggered by directional light in unicellular cyanobacteria , 2017, Proceedings of the National Academy of Sciences.
[14] C. Mullineaux,et al. Cyanobacteria in motion. , 2017, Current opinion in plant biology.
[15] D. Bhaya,et al. Emergent Phototactic Responses of Cyanobacteria under Complex Light Regimes , 2017, mBio.
[16] Brian F. Pfleger,et al. CRISPR interference as a titratable, trans-acting regulatory tool for metabolic engineering in the cyanobacterium Synechococcus sp. strain PCC 7002. , 2016, Metabolic engineering.
[17] N. Adir,et al. Orange carotenoid protein burrows into the phycobilisome to provide photoprotection , 2016, Proceedings of the National Academy of Sciences.
[18] Susan E. Cohen,et al. A Microfluidic Platform for Long-Term Monitoring of Algae in a Dynamic Environment. , 2016, ACS synthetic biology.
[19] D. Savage,et al. Live-cell imaging of cyanobacteria , 2014, Photosynthesis Research.
[20] J. M. Schuurmans,et al. Comparison of the Photosynthetic Yield of Cyanobacteria and Green Algae: Different Methods Give Different Answers , 2015, PloS one.
[21] H. Stone,et al. The Mechanical World of Bacteria , 2015, Cell.
[22] Setsu Kato,et al. A Constant Size Extension Drives Bacterial Cell Size Homeostasis , 2014, Cell.
[23] C. Mullineaux,et al. Binding of the RNA chaperone Hfq to the type IV pilus base is crucial for its function in Synechocystis sp. PCC 6803 , 2014, Molecular microbiology.
[24] Ryan L. Clark,et al. Insights into the industrial growth of cyanobacteria from a model of the carbon-concentrating mechanism , 2014 .
[25] C. Mullineaux. Electron transport and light-harvesting switches in cyanobacteria , 2014, Front. Plant Sci..
[26] Jeffrey C. Cameron,et al. Biogenesis of a Bacterial Organelle: The Carboxysome Assembly Pathway , 2013, Cell.
[27] M. Badger,et al. Functions, Compositions, and Evolution of the Two Types of Carboxysomes: Polyhedral Microcompartments That Facilitate CO2 Fixation in Cyanobacteria and Some Proteobacteria , 2013, Microbiology and Molecular Reviews.
[28] Stefan R. Pulver,et al. Ultra-sensitive fluorescent proteins for imaging neuronal activity , 2013, Nature.
[29] D. Kirilovsky,et al. Characterization of the Synechocystis PCC 6803 Fluorescence Recovery Protein involved in photoprotection. , 2013, Biochimica et biophysica acta.
[30] N. Keren,et al. Balancing photosynthetic electron flow is critical for cyanobacterial acclimation to nitrogen limitation. , 2013, Biochimica et biophysica acta.
[31] Arthur Chiou,et al. Bacterial Colony from Two-Dimensional Division to Three-Dimensional Development , 2012, PloS one.
[32] M. Ludwig,et al. Synechococcus sp. Strain PCC 7002 Transcriptome: Acclimation to Temperature, Salinity, Oxidative Stress, and Mixotrophic Growth Conditions , 2012, Front. Microbio..
[33] Ian R. Booth,et al. The MscS and MscL Families of Mechanosensitive Channels Act as Microbial Emergency Release Valves , 2012, Journal of bacteriology.
[34] Ajay Gopinathan,et al. Measuring the stiffness of bacterial cells from growth rates in hydrogels of tunable elasticity , 2012, Molecular microbiology.
[35] M. Ludwig,et al. Acclimation of the Global Transcriptome of the Cyanobacterium Synechococcus sp. Strain PCC 7002 to Nutrient Limitations and Different Nitrogen Sources , 2012, Front. Microbio..
[36] Z. Reich,et al. Structural and functional alterations of cyanobacterial phycobilisomes induced by high-light stress. , 2012, Biochimica et biophysica acta.
[37] B. Palsson,et al. Detailing the optimality of photosynthesis in cyanobacteria through systems biology analysis , 2012, Proceedings of the National Academy of Sciences.
[38] Adjélé Wilson,et al. In Vitro Reconstitution of the Cyanobacterial Photoprotective Mechanism Mediated by the Orange Carotenoid Protein in Synechocystis PCC 6803[C][W] , 2011, Plant Cell.
[39] Jeffrey C. Cameron,et al. Glutathione Facilitates Antibiotic Resistance and Photosystem I Stability during Exposure to Gentamicin in Cyanobacteria , 2011, Applied and Environmental Microbiology.
[40] M. Ludwig,et al. Transcription Profiling of the Model Cyanobacterium Synechococcus sp. Strain PCC 7002 by Next-Gen (SOLiD™) Sequencing of cDNA , 2011, Front. Microbio..
[41] Paul A. Janmey,et al. Mechanisms of mechanical signaling in development and disease , 2011, Journal of Cell Science.
[42] Jeffrey C. Cameron,et al. Glutathione in Synechocystis 6803 , 2011, Plant signaling & behavior.
[43] Jeffrey C. Cameron,et al. Essential Role of Glutathione in Acclimation to Environmental and Redox Perturbations in the Cyanobacterium Synechocystis sp. PCC 68031[W][OA] , 2010, Plant Physiology.
[44] Bijoy K. Ghosh,et al. Integrative analysis of large scale expression profiles reveals core transcriptional response and coordination between multiple cellular processes in a cyanobacterium , 2010, BMC Systems Biology.
[45] K. Curry,et al. The Pentameric Vertex Proteins Are Necessary for the Icosahedral Carboxysome Shell to Function as a CO2 Leakage Barrier , 2009, PloS one.
[46] Rajeev Aurora,et al. A Systems-Level Analysis of the Effects of Light Quality on the Metabolism of a Cyanobacterium1[W][OA] , 2009, Plant Physiology.
[47] K. Jaqaman,et al. Robust single particle tracking in live cell time-lapse sequences , 2008, Nature Methods.
[48] Rajeev Aurora,et al. Integration of Carbon and Nitrogen Metabolism with Energy Production Is Crucial to Light Acclimation in the Cyanobacterium Synechocystis1[W][OA] , 2008, Plant Physiology.
[49] M. Badger,et al. Advances in understanding the cyanobacterial CO2-concentrating-mechanism (CCM): functional components, Ci transporters, diversity, genetic regulation and prospects for engineering into plants. , 2008, Journal of experimental botany.
[50] Jindong Zhao,et al. Regulation of intracellular free calcium concentration during heterocyst differentiation by HetR and NtcA in Anabaena sp. PCC 7120. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[51] C. Kerfeld,et al. A Soluble Carotenoid Protein Involved in Phycobilisome-Related Energy Dissipation in Cyanobacteria , 2006, The Plant Cell Online.
[52] A. Wilde,et al. Phototaxis in the Cyanobacterium Synechocystis sp. PCC 6803: Role of Different Photoreceptors , 2005, Photochemistry and photobiology.
[53] D. Kaftan,et al. STRESS‐INDUCED FILAMENT FRAGMENTATION OF CALOTHRIX ELENKINII (CYANOBACTERIA) IS FACILITATED BY DEATH OF HIGH‐FLUORESCENCE CELLS 1 , 2005 .
[54] P. Mullineaux,et al. The influence of the light environment and photosynthesis on oxidative signalling responses in plant-biotrophic pathogen interactions , 2005 .
[55] C. Mullineaux,et al. Involvement of Phycobilisome Diffusion in Energy Quenching in Cyanobacteria1 , 2005, Plant Physiology.
[56] L. Sherman,et al. Pleiotropic Effect of a Histidine Kinase on Carbohydrate Metabolism in Synechocystis sp. Strain PCC 6803 and Its Requirement for Heterotrophic Growth , 2005, Journal of bacteriology.
[57] C. Mullineaux,et al. Phycobilisome Diffusion Is Required for Light-State Transitions in Cyanobacteria1 , 2004, Plant Physiology.
[58] M. Ikeuchi,et al. Phototactic motility in the unicellular cyanobacterium Synechocystis sp. PCC 6803 , 2004, Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology.
[59] D. Bhaya,et al. Multiple Light Inputs Control Phototaxis in Synechocystis sp. Strain PCC6803 , 2003, Journal of bacteriology.
[60] Payam Shahi,et al. Novel Motility Mutants ofSynechocystis Strain PCC 6803 Generated by In Vitro Transposon Mutagenesis , 2001, Journal of bacteriology.
[61] G. Zabulon,et al. Nitrogen or Sulfur Starvation Differentially Affects Phycobilisome Degradation and Expression of the nblA Gene in Synechocystis Strain PCC 6803 , 2001, Journal of bacteriology.
[62] D. Campbell,et al. Chlorophyll Fluorescence Analysis of Cyanobacterial Photosynthesis and Acclimation , 1998, Microbiology and Molecular Biology Reviews.
[63] E. Maltini,et al. Influence of Structural Properties and Kinetic Constraints on Bacillus cereus Growth , 1998, Applied and Environmental Microbiology.
[64] D. Mastronarde. Dual-axis tomography: an approach with alignment methods that preserve resolution. , 1997, Journal of structural biology.
[65] A. Kaplan,et al. Low Activation State of Ribulose-1,5-Bisphosphate Carboxylase/Oxygenase in Carboxysome-Defective Synechococcus Mutants , 1995, Plant physiology.
[66] A. Crofts,et al. Pressure and low temperature effects on the fluorescence emission spectra and lifetimes of the photosynthetic components of cyanobacteria. , 1992, Biophysical journal.
[67] D. Häder,et al. Interactive image analysis system to determine the motility and velocity of cyanobacterial filaments. , 1991, Journal of biochemical and biophysical methods.
[68] D. Bruce,et al. State transitions in a phycobilisome-less mutant of the cyanobacterium Synechococcus sp. PCC 7002. , 1989, Biochimica et biophysica acta.
[69] A. Volgenant,et al. A shortest augmenting path algorithm for dense and sparse linear assignment problems , 1987, Computing.
[70] J. Brand,et al. Evidence for direct roles of calcium in photosynthesis , 1984, Journal of bioenergetics and biomembranes.
[71] W. Vidaver,et al. Hydrostatic Pressure: A Reversible Inhibitor of Primary Photosynthetic Processes , 1973, Zeitschrift fur Naturforschung. Teil C: Biochemie, Biophysik, Biologie, Virologie.
[72] J. Myers,et al. THE PRODUCTION OF HYDROGEN PEROXIDE BY BLUE‐GREEN ALGAE: A SURVEY 1 , 1973 .
[73] C. Kerfeld,et al. Bacterial microcompartments. , 2010, Annual review of microbiology.
[74] E. O'Toole,et al. Understanding microtubule organizing centers by comparing mutant and wild-type structures with electron tomography. , 2007, Methods in cell biology.
[75] J R Kremer,et al. Computer visualization of three-dimensional image data using IMOD. , 1996, Journal of structural biology.