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Philip D Weyman

Showing results (1-10 of 29) with videos related to

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Methods in Molecular Biology (Clifton, N.J.)|October 7, 2016
Facile Site-Directed Mutagenesis of Large Constructs Using Gibson Isothermal DNA AssemblyIsaac T Yonemoto, Philip D Weyman
Applied and Environmental Microbiology|February 19, 2008
Transcription of hupSL in Anabaena variabilis ATCC 29413 is regulated by NtcA and not by hydrogenPhilip D Weyman, Brenda Pratte, Teresa Thiel
FEMS Microbiology Letters|January 15, 2010
Hydrogen production in nitrogenase mutants in Anabaena variabilisPhilip D Weyman, Brenda Pratte, Teresa Thiel
Chromosome Research : an International Journal on the Molecular, Supramolecular and Evolutionary Aspects of Chromosome Biology|January 19, 2015
Strategies for cloning and manipulating natural and synthetic chromosomesBogumil J Karas, Yo Suzuki, Philip D Weyman
FEMS Microbiology Letters|July 2, 2011
Genetic analysis of the Alteromonas macleodii [NiFe]-hydrogenasePhilip D Weyman, Hamilton O Smith, Qing Xu
International Journal of Molecular Sciences|January 21, 2015
Designed surface residue substitutions in [NiFe] hydrogenase that improve electron transfer characteristicsIsaac T Yonemoto, Hamilton O Smith, Philip D Weyman
BMC Biochemistry|June 18, 2014
A broad survey reveals substitution tolerance of residues ligating FeS clusters in [NiFe] hydrogenaseIsaac T Yonemoto, Benjamin R Clarkson, Hamilton O Smith, et al.
Plant Physiology|December 20, 2005
A circadian rhythm-regulated tomato gene is induced by Arachidonic acid and Phythophthora infestans infectionPhilip D Weyman, Zhiqiang Pan, Qin Feng, et al.
Plant Molecular Biology|August 10, 2006
DEA1, a circadian- and cold-regulated tomato gene, protects yeast cells from freezing deathPhilip D Weyman, Zhiqiang Pan, Qin Feng, et al.
Applied and Environmental Microbiology|January 25, 2011
[NiFe] hydrogenase from Alteromonas macleodii with unusual stability in the presence of oxygen and high temperatureWalter A Vargas, Philip D Weyman, Yingkai Tong, et al.
Pageof 3

Showing results (1-10 of 29) with videos related to

Sort By:
Pageof 3
Methods in Molecular Biology (Clifton, N.J.)|October 7, 2016
Facile Site-Directed Mutagenesis of Large Constructs Using Gibson Isothermal DNA AssemblyIsaac T Yonemoto, Philip D Weyman
Applied and Environmental Microbiology|February 19, 2008
Transcription of hupSL in Anabaena variabilis ATCC 29413 is regulated by NtcA and not by hydrogenPhilip D Weyman, Brenda Pratte, Teresa Thiel
FEMS Microbiology Letters|January 15, 2010
Hydrogen production in nitrogenase mutants in Anabaena variabilisPhilip D Weyman, Brenda Pratte, Teresa Thiel
Chromosome Research : an International Journal on the Molecular, Supramolecular and Evolutionary Aspects of Chromosome Biology|January 19, 2015
Strategies for cloning and manipulating natural and synthetic chromosomesBogumil J Karas, Yo Suzuki, Philip D Weyman
FEMS Microbiology Letters|July 2, 2011
Genetic analysis of the Alteromonas macleodii [NiFe]-hydrogenasePhilip D Weyman, Hamilton O Smith, Qing Xu
International Journal of Molecular Sciences|January 21, 2015
Designed surface residue substitutions in [NiFe] hydrogenase that improve electron transfer characteristicsIsaac T Yonemoto, Hamilton O Smith, Philip D Weyman
BMC Biochemistry|June 18, 2014
A broad survey reveals substitution tolerance of residues ligating FeS clusters in [NiFe] hydrogenaseIsaac T Yonemoto, Benjamin R Clarkson, Hamilton O Smith, et al.
Plant Physiology|December 20, 2005
A circadian rhythm-regulated tomato gene is induced by Arachidonic acid and Phythophthora infestans infectionPhilip D Weyman, Zhiqiang Pan, Qin Feng, et al.
Plant Molecular Biology|August 10, 2006
DEA1, a circadian- and cold-regulated tomato gene, protects yeast cells from freezing deathPhilip D Weyman, Zhiqiang Pan, Qin Feng, et al.
Applied and Environmental Microbiology|January 25, 2011
[NiFe] hydrogenase from Alteromonas macleodii with unusual stability in the presence of oxygen and high temperatureWalter A Vargas, Philip D Weyman, Yingkai Tong, et al.
Pageof 3