Proteome Analyses of Strains ATCC 51142 and PCC 7822 of the Diazotrophic Cyanobacterium Cyanothece sp. under Culture Conditions Resulting in Enhanced H2 Production
暂无分享,去创建一个
Ronald J. Moore | Stephen J. Callister | Anil K. Shukla | Richard D. Smith | M. Monroe | T. Angel | L. Sherman | U. Aryal | D. Koppenaal | Sujata Mishra | Xiaohui Zhang | J. Shutthanandan
[1] Nikola Tolić,et al. Ultrasensitive proteomics using high-efficiency on-line micro-SPE-nanoLC-nanoESI MS and MS/MS. , 2004, Analytical chemistry.
[2] P. Silver,et al. Spatially Ordered Dynamics of the Bacterial Carbon Fixation Machinery , 2010, Science.
[3] Navdeep Jaitly,et al. DAnTE: a statistical tool for quantitative analysis of -omics data , 2008, Bioinform..
[4] G. Stephanopoulos,et al. Engineering for biofuels: exploiting innate microbial capacity or importing biosynthetic potential? , 2009, Nature Reviews Microbiology.
[5] Ronald J Moore,et al. Ultra-high-efficiency strong cation exchange LC/RPLC/MS/MS for high dynamic range characterization of the human plasma proteome. , 2004, Analytical chemistry.
[6] R. Douce,et al. Biochemical dissection of photorespiration. , 1999, Current opinion in plant biology.
[7] Eric A Welsh,et al. Dynamic proteome analysis of Cyanothece sp. ATCC 51142 under constant light. , 2012, Journal of proteome research.
[8] Louis A. Sherman,et al. Genetic Transformation and Mutagenesis via Single-Stranded DNA in the Unicellular, Diazotrophic Cyanobacteria of the Genus Cyanothece , 2010, Applied and Environmental Microbiology.
[9] Xueyang Feng,et al. Mixotrophic and photoheterotrophic metabolism in Cyanothece sp. ATCC 51142 under continuous light. , 2010, Microbiology.
[10] S. Bhattacharya,et al. Hydrogen production by Cyanobacteria , 2005, Microbial Cell Factories.
[11] Michael G. Katze,et al. Proteome Analysis of Liver Cells Expressing a Full-Length Hepatitis C Virus (HCV) Replicon and Biopsy Specimens of Posttransplantation Liver from HCV-Infected Patients , 2005, Journal of Virology.
[12] Christian E. V. Storm,et al. Automatic clustering of orthologs and in-paralogs from pairwise species comparisons. , 2001, Journal of molecular biology.
[13] L. Sherman,et al. Oscillating behavior of carbohydrate granule formation and dinitrogen fixation in the cyanobacterium Cyanothece sp. strain ATCC 51142 , 1994, Journal of bacteriology.
[14] J. Mcdermott,et al. TRANSCRIPTIONAL ANALYSIS OF THE UNICELLULAR, DIAZOTROPHIC CYANOBACTERIUM CYANOTHECE SP. ATCC 51142 GROWN UNDER SHORT DAY/NIGHT CYCLES 1 , 2009, Journal of phycology.
[15] D. Bryant,et al. Prokaryotic photosynthesis and phototrophy illuminated. , 2006, Trends in microbiology.
[16] L. H. Grimme,et al. The significance of hydrogenase activity for the energy metabolism of green algae: anaerobiosis favours ATP synthesis in cells of Chlorella with active hydrogenase , 1986, Archives of Microbiology.
[17] J. Oost,et al. Hydrogenase activity in nitrate-grown cells of the unicellular cyanobacterium Cyanothece PCC 7822 , 1988, Archives of Microbiology.
[18] Olaf Kruse,et al. Photosynthesis: a blueprint for solar energy capture and biohydrogen production technologies , 2005, Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology.
[19] Yinjie J. Tang,et al. Alternative isoleucine synthesis pathway in cyanobacterial species. , 2010, Microbiology.
[20] A. Mitsui,et al. Strategy by which nitrogen-fixing unicellular cyanobacteria grow photoautotrophically , 1986, Nature.
[21] David W. Koppenaal,et al. Diurnal Rhythms Result in Significant Changes in the Cellular Protein Complement in the Cyanobacterium Cyanothece 51142 , 2011, PloS one.
[22] Dipankar Ghosh,et al. Advances in fermentative biohydrogen production: the way forward? , 2009, Trends in biotechnology.
[23] M. Ghirardi,et al. Oxygenic hydrogen photoproduction - current status of the technology. , 2010 .
[24] Louis A. Sherman,et al. Hydrogen Production by the Unicellular, Diazotrophic Cyanobacterium Cyanothece sp. Strain ATCC 51142 under Conditions of Continuous Light , 2010, Applied and Environmental Microbiology.
[25] E. Koonin,et al. Orthology, paralogy and proposed classification for paralog subtypes. , 2002, Trends in genetics : TIG.
[26] Paula Tamagnini,et al. Hydrogenases and Hydrogen Metabolism of Cyanobacteria , 2002, Microbiology and Molecular Biology Reviews.
[27] J. Benemann,et al. Hydrogen biotechnology: Progress and prospects , 1996, Nature Biotechnology.
[28] 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.
[29] Ronald J Moore,et al. Multidimensional proteome analysis of human mammary epithelial cells. , 2004, Journal of proteome research.
[30] Rajeev Aurora,et al. Global transcriptomic analysis of Cyanothece 51142 reveals robust diurnal oscillation of central metabolic processes , 2008, Proceedings of the National Academy of Sciences.
[31] M. D. Hatch,et al. Comparative studies on the activity of carboxylases and other enzymes in relation to the new pathway of photosynthetic carbon dioxide fixation in tropical grasses. , 1967, The Biochemical journal.
[32] Himadri B. Pakrasi,et al. Novel Metabolic Attributes of the Genus Cyanothece, Comprising a Group of Unicellular Nitrogen-Fixing Cyanobacteria , 2011, mBio.
[33] K. Krab,et al. Hydrogen metabolism of three unicellular nitrogen-fixing cyanobacteria , 1987 .
[34] Himadri B. Pakrasi,et al. Differential Transcriptional Analysis of the Cyanobacterium Cyanothece sp. Strain ATCC 51142 during Light-Dark and Continuous-Light Growth , 2008, Journal of bacteriology.
[35] J. van der Oost,et al. Fermentation metabolism of the unicellular cyanobacterium Cyanothece PCC 7822 , 1989, Archives of Microbiology.
[36] Geoffrey D. Smith,et al. Soluble hydrogenase of Anabaena cylindrica , 1990 .
[37] Rajeev Aurora,et al. The genome of Cyanothece 51142, a unicellular diazotrophic cyanobacterium important in the marine nitrogen cycle , 2008, Proceedings of the National Academy of Sciences.
[38] J. Benemann,et al. Hydrogen Evolution by Nitrogen-Fixing Anabaena cylindrica Cultures , 1974, Science.
[39] H. Sakurai,et al. Disruption of the uptake hydrogenase gene, but not of the bidirectional hydrogenase gene, leads to enhanced photobiological hydrogen production by the nitrogen-fixing cyanobacterium Anabaena sp. PCC 7120 , 2002, Applied Microbiology and Biotechnology.
[40] P. Pevzner,et al. Spectral probabilities and generating functions of tandem mass spectra: a strike against decoy databases. , 2008, Journal of proteome research.
[41] Y. Asada,et al. Aerobic Hydrogen Accumulation by a Nitrogen-Fixing Cyanobacterium, Anabaena sp , 1986, Applied and environmental microbiology.
[42] Jana Stöckel,et al. High rates of photobiological H2 production by a cyanobacterium under aerobic conditions. , 2010, Nature communications.
[43] M. Ghirardi,et al. Microalgae: a green source of renewable H(2). , 2000, Trends in biotechnology.
[44] Richard D. Smith,et al. Dynamic proteomic profiling of a unicellular cyanobacterium Cyanothece ATCC51142 across light-dark diurnal cycles , 2011, BMC Systems Biology.
[45] 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.
[46] Thanura R. Elvitigala,et al. Global Proteomics Reveal an Atypical Strategy for Carbon/Nitrogen Assimilation by a Cyanobacterium Under Diverse Environmental Perturbations* , 2010, Molecular & Cellular Proteomics.
[47] G. Smith,et al. Soluble hydrogenase of Anabaena cylindrica. Cloning and sequencing of a potential gene encoding the tritium exchange subunit. , 1990, European journal of biochemistry.
[48] Thanura R. Elvitigala,et al. Effect of continuous light on diurnal rhythms in Cyanothece sp. ATCC 51142 , 2009, BMC Genomics.
[49] Louis A. Sherman,et al. Diurnal rhythms in metabolism: A day in the life of a unicellular, diazotrophic cyanobacterium , 1998, Photosynthesis Research.
[50] Himadri B Pakrasi,et al. The Structure of a Cyanobacterial Bicarbonate Transport Protein, CmpA* , 2007, Journal of Biological Chemistry.
[51] Paula Tamagnini,et al. Cyanobacterial hydrogenases: diversity, regulation and applications. , 2007, FEMS microbiology reviews.