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Donald L Court

Showing results (31-40 of 83) with videos related to

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Journal of Bacteriology|December 4, 2004
Identification of the Escherichia coli K-12 ybhE gene as pgl, encoding 6-phosphogluconolactonaseLynn C Thomason, Donald L Court, Atin R Datta, et al.
Proceedings of the National Academy of Sciences of the United States of America|February 25, 2005
Quantitative kinetic analysis of the bacteriophage lambda genetic networkOren Kobiler, Assaf Rokney, Nir Friedman, et al.
Molecular Microbiology|May 3, 2013
Bacterial DNA polymerases participate in oligonucleotide recombinationXin-tian Li, Lynn C Thomason, James A Sawitzke, et al.
Journal of Bacteriology|May 25, 2002
Requirement for NusG for transcription antitermination in vivo by the lambda N proteinYing Zhou, Joshua J Filter, Donald L Court, et al.
Virology|February 26, 2004
In vivo recombineering of bacteriophage lambda by PCR fragments and single-strand oligonucleotidesAmos B Oppenheim, Alison J Rattray, Mikhail Bubunenko, et al.
Nucleic Acids Research|November 9, 2013
Positive and negative selection using the tetA-sacB cassette: recombineering and P1 transduction in Escherichia coliXin-Tian Li, Lynn C Thomason, James A Sawitzke, et al.
Antibiotics (Basel, Switzerland)|November 18, 2020
λ Recombineering Used to Engineer the Genome of Phage T7Jordan D Jensen, Adam R Parks, Sankar Adhya, et al.
Journal of Molecular Biology|January 3, 2007
Importance of the 5 S rRNA-binding ribosomal proteins for cell viability and translation in Escherichia coliAlexey P Korepanov, George M Gongadze, Maria B Garber, et al.
Methods in Enzymology|March 14, 2007
Recombineering: in vivo genetic engineering in E. coli, S. enterica, and beyondJames A Sawitzke, Lynn C Thomason, Nina Costantino, et al.
Methods in Enzymology|November 5, 2013
Recombineering: highly efficient in vivo genetic engineering using single-strand oligosJames A Sawitzke, Lynn C Thomason, Mikhail Bubunenko, et al.
Pageof 9

Showing results (31-40 of 83) with videos related to

Sort By:
Pageof 9
Journal of Bacteriology|December 4, 2004
Identification of the Escherichia coli K-12 ybhE gene as pgl, encoding 6-phosphogluconolactonaseLynn C Thomason, Donald L Court, Atin R Datta, et al.
Proceedings of the National Academy of Sciences of the United States of America|February 25, 2005
Quantitative kinetic analysis of the bacteriophage lambda genetic networkOren Kobiler, Assaf Rokney, Nir Friedman, et al.
Molecular Microbiology|May 3, 2013
Bacterial DNA polymerases participate in oligonucleotide recombinationXin-tian Li, Lynn C Thomason, James A Sawitzke, et al.
Journal of Bacteriology|May 25, 2002
Requirement for NusG for transcription antitermination in vivo by the lambda N proteinYing Zhou, Joshua J Filter, Donald L Court, et al.
Virology|February 26, 2004
In vivo recombineering of bacteriophage lambda by PCR fragments and single-strand oligonucleotidesAmos B Oppenheim, Alison J Rattray, Mikhail Bubunenko, et al.
Nucleic Acids Research|November 9, 2013
Positive and negative selection using the tetA-sacB cassette: recombineering and P1 transduction in Escherichia coliXin-Tian Li, Lynn C Thomason, James A Sawitzke, et al.
Antibiotics (Basel, Switzerland)|November 18, 2020
λ Recombineering Used to Engineer the Genome of Phage T7Jordan D Jensen, Adam R Parks, Sankar Adhya, et al.
Journal of Molecular Biology|January 3, 2007
Importance of the 5 S rRNA-binding ribosomal proteins for cell viability and translation in Escherichia coliAlexey P Korepanov, George M Gongadze, Maria B Garber, et al.
Methods in Enzymology|March 14, 2007
Recombineering: in vivo genetic engineering in E. coli, S. enterica, and beyondJames A Sawitzke, Lynn C Thomason, Nina Costantino, et al.
Methods in Enzymology|November 5, 2013
Recombineering: highly efficient in vivo genetic engineering using single-strand oligosJames A Sawitzke, Lynn C Thomason, Mikhail Bubunenko, et al.
Pageof 9