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Journal of Bacteriology
|
August 8, 1998
Suppression of TGA mutations in the Bacillus subtilis spoIIR gene by prfB mutations
M L Karow, E J Rogers, P S Lovett, et al.
Biochimica Et Biophysica Acta
|
September 18, 2012
Stability and membrane interactions of an autotransport protein: MD simulations of the Hia translocator domain in a complex membrane environment
Daniel A Holdbrook, Thomas J Piggot, Mark S P Sansom, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
November 1, 1985
Deduced product of the stage 0 sporulation gene spo0F shares homology with the Spo0A, OmpR, and SfrA proteins
K A Trach, J W Chapman, P J Piggot, et al.
Microbiology (Reading, England)
|
October 28, 1999
Nucleosides as a carbon source in Bacillus subtilis: characterization of the drm-pupG operon
R Schuch, A Garibian, H H Saxild, et al.
Journal of Chemical Theory and Computation
|
September 7, 2017
On the Calculation of Acyl Chain Order Parameters from Lipid Simulations
Thomas J Piggot, Jane R Allison, Richard B Sessions, et al.
Gene
|
May 25, 1991
Transcription of the Bacillus subtilis spoIIA locus
J J Wu, P J Piggot, K M Tatti, et al.
Molecular Microbiology
|
March 1, 1990
The life-cycle proteins RodA of Escherichia coli and SpoVE of Bacillus subtilis have very similar primary structures
B Joris, G Dive, A Henriques, et al.
Journal of General Microbiology
|
November 1, 1982
Facile in vivo transfer of mutations between the Bacillus subtilis chromosome and a plasmid harbouring homologous DNA
K F Chak, H de Lencastre, H M Liu, et al.
Journal of Bacteriology
|
April 1, 1993
Axial filament formation in Bacillus subtilis: induction of nucleoids of increasing length after addition of chloramphenicol to exponential-phase cultures approaching stationary phase
J E Bylund, M A Haines, P J Piggot, et al.
Molecular Microbiology
|
February 15, 2000
The putative DNA translocase SpoIIIE is required for sporulation of the symmetrically dividing coccal species Sporosarcina ureae
V K Chary, D W Hilbert, M L Higgins, et al.
Page
of 13
Search research articles
Search
Showing results (91-100 of 122) with videos related to
Sort By:
Page
of 13
Journal of Bacteriology
|
August 8, 1998
Suppression of TGA mutations in the Bacillus subtilis spoIIR gene by prfB mutations
M L Karow, E J Rogers, P S Lovett, et al.
Biochimica Et Biophysica Acta
|
September 18, 2012
Stability and membrane interactions of an autotransport protein: MD simulations of the Hia translocator domain in a complex membrane environment
Daniel A Holdbrook, Thomas J Piggot, Mark S P Sansom, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
November 1, 1985
Deduced product of the stage 0 sporulation gene spo0F shares homology with the Spo0A, OmpR, and SfrA proteins
K A Trach, J W Chapman, P J Piggot, et al.
Microbiology (Reading, England)
|
October 28, 1999
Nucleosides as a carbon source in Bacillus subtilis: characterization of the drm-pupG operon
R Schuch, A Garibian, H H Saxild, et al.
Journal of Chemical Theory and Computation
|
September 7, 2017
On the Calculation of Acyl Chain Order Parameters from Lipid Simulations
Thomas J Piggot, Jane R Allison, Richard B Sessions, et al.
Gene
|
May 25, 1991
Transcription of the Bacillus subtilis spoIIA locus
J J Wu, P J Piggot, K M Tatti, et al.
Molecular Microbiology
|
March 1, 1990
The life-cycle proteins RodA of Escherichia coli and SpoVE of Bacillus subtilis have very similar primary structures
B Joris, G Dive, A Henriques, et al.
Journal of General Microbiology
|
November 1, 1982
Facile in vivo transfer of mutations between the Bacillus subtilis chromosome and a plasmid harbouring homologous DNA
K F Chak, H de Lencastre, H M Liu, et al.
Journal of Bacteriology
|
April 1, 1993
Axial filament formation in Bacillus subtilis: induction of nucleoids of increasing length after addition of chloramphenicol to exponential-phase cultures approaching stationary phase
J E Bylund, M A Haines, P J Piggot, et al.
Molecular Microbiology
|
February 15, 2000
The putative DNA translocase SpoIIIE is required for sporulation of the symmetrically dividing coccal species Sporosarcina ureae
V K Chary, D W Hilbert, M L Higgins, et al.
Page
of 13