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Molecular Microbiology
|
January 1, 1992
Isolation and characterization of sporulation-specific promoters in the yeast Saccharomyces cerevisiae
J G Coe, L E Murray, C J Kennedy, et al.
Molecular Microbiology
|
July 1, 1996
Yeast glutathione reductase is required for protection against oxidative stress and is a target gene for yAP-1 transcriptional regulation
C M Grant, L P Collinson, J H Roe, et al.
Journal of Bacteriology
|
February 11, 1998
Toxicity of linoleic acid hydroperoxide to Saccharomyces cerevisiae: involvement of a respiration-related process for maximal sensitivity and adaptive response
M V Evans, H E Turton, C M Grant, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
October 1, 1983
13C NMR studies of acetate metabolism during sporulation of Saccharomyces cerevisiae
J R Dickinson, I W Dawes, A S Boyd, et al.
The Journal of Biological Chemistry
|
April 3, 1999
Control of expression of one-carbon metabolism genes of Saccharomyces cerevisiae is mediated by a tetrahydrofolate-responsive protein binding to a glycine regulatory region including a core 5'-CTTCTT-3' motif
S P Hong, M D Piper, D A Sinclair, et al.
Current Genetics
|
October 1, 1995
A two-reporter gene system for the analysis of bi-directional transcription from the divergent MAL6T-MAL6S promoter in Saccharomyces cerevisiae
P J Bell, P H Bissinger, R J Evans, et al.
Biochimica Et Biophysica Acta
|
April 29, 2000
Differential regulation of glutaredoxin gene expression in response to stress conditions in the yeast Saccharomyces cerevisiae
C M Grant, S Luikenhuis, A Beckhouse, et al.
Applied and Environmental Microbiology
|
November 5, 1997
The freeze-thaw stress response of the yeast Saccharomyces cerevisiae is growth phase specific and is controlled by nutritional state via the RAS-cyclic AMP signal transduction pathway
J I Park, C M Grant, P V Attfield, et al.
The Journal of Biological Chemistry
|
August 29, 1998
The cytoplasmic Cu,Zn superoxide dismutase of saccharomyces cerevisiae is required for resistance to freeze-thaw stress. Generation of free radicals during freezing and thawing
J I Park, C M Grant, M J Davies, et al.
Yeast (Chichester, England)
|
September 25, 1997
Tandemly repeated 147 bp elements cause structural and functional variation in divergent MAL promoters of Saccharomyces cerevisiae
P J Bell, V J Higgins, I W Dawes, et al.
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Search research articles
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Showing results (51-60 of 79) with videos related to
Sort By:
Page
of 8
Molecular Microbiology
|
January 1, 1992
Isolation and characterization of sporulation-specific promoters in the yeast Saccharomyces cerevisiae
J G Coe, L E Murray, C J Kennedy, et al.
Molecular Microbiology
|
July 1, 1996
Yeast glutathione reductase is required for protection against oxidative stress and is a target gene for yAP-1 transcriptional regulation
C M Grant, L P Collinson, J H Roe, et al.
Journal of Bacteriology
|
February 11, 1998
Toxicity of linoleic acid hydroperoxide to Saccharomyces cerevisiae: involvement of a respiration-related process for maximal sensitivity and adaptive response
M V Evans, H E Turton, C M Grant, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
October 1, 1983
13C NMR studies of acetate metabolism during sporulation of Saccharomyces cerevisiae
J R Dickinson, I W Dawes, A S Boyd, et al.
The Journal of Biological Chemistry
|
April 3, 1999
Control of expression of one-carbon metabolism genes of Saccharomyces cerevisiae is mediated by a tetrahydrofolate-responsive protein binding to a glycine regulatory region including a core 5'-CTTCTT-3' motif
S P Hong, M D Piper, D A Sinclair, et al.
Current Genetics
|
October 1, 1995
A two-reporter gene system for the analysis of bi-directional transcription from the divergent MAL6T-MAL6S promoter in Saccharomyces cerevisiae
P J Bell, P H Bissinger, R J Evans, et al.
Biochimica Et Biophysica Acta
|
April 29, 2000
Differential regulation of glutaredoxin gene expression in response to stress conditions in the yeast Saccharomyces cerevisiae
C M Grant, S Luikenhuis, A Beckhouse, et al.
Applied and Environmental Microbiology
|
November 5, 1997
The freeze-thaw stress response of the yeast Saccharomyces cerevisiae is growth phase specific and is controlled by nutritional state via the RAS-cyclic AMP signal transduction pathway
J I Park, C M Grant, P V Attfield, et al.
The Journal of Biological Chemistry
|
August 29, 1998
The cytoplasmic Cu,Zn superoxide dismutase of saccharomyces cerevisiae is required for resistance to freeze-thaw stress. Generation of free radicals during freezing and thawing
J I Park, C M Grant, M J Davies, et al.
Yeast (Chichester, England)
|
September 25, 1997
Tandemly repeated 147 bp elements cause structural and functional variation in divergent MAL promoters of Saccharomyces cerevisiae
P J Bell, V J Higgins, I W Dawes, et al.
Page
of 8