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Nature
|
October 6, 1988
GAL4-VP16 is an unusually potent transcriptional activator
I Sadowski, J Ma, S Triezenberg, et al.
Trends in Biotechnology
|
December 29, 2015
Harnessing QbD, Programming Languages, and Automation for Reproducible Biology
Michael I Sadowski, Chris Grant, Tim S Fell
Computational Biology and Chemistry
|
October 18, 2011
Direct correlation analysis improves fold recognition
Michael I Sadowski, Katarzyna Maksimiak, William R Taylor
Proceedings of the National Academy of Sciences of the United States of America
|
December 1, 1991
GAL4 is phosphorylated as a consequence of transcriptional activation
I Sadowski, D Niedbala, K Wood, et al.
Mutation Research
|
April 1, 1984
RK bacterial test for independently measuring chemical toxicity and mutagenicity: short-term forward selection assay
S Hayes, A Gordon, I Sadowski, et al.
Journal of Computational Biology : a Journal of Computational Molecular Cell Biology
|
July 24, 2010
Re-evaluating the "rules" of protein topology
Ben Grainger, Michael I Sadowski, William R Taylor
Gene
|
September 1, 1992
GAL4 fusion vectors for expression in yeast or mammalian cells
I Sadowski, B Bell, P Broad, et al.
Journal of Virology
|
July 11, 1998
Naturally occurring human immunodeficiency virus type 1 long terminal repeats have a frequently observed duplication that binds RBF-2 and represses transcription
M C Estable, B Bell, M Hirst, et al.
European Journal of Biochemistry
|
April 15, 1997
Characterization of the basal and pheromone-stimulated phosphorylation states of Ste12p
W Hung, K A Olson, A Breitkreutz, et al.
Bio Systems
|
August 4, 2005
Automated derivation and refinement of sequence length patterns for protein sequences using evolutionary computation
M I Sadowski, J H Parish, D R Westhead
Page
of 6
Search research articles
Search
Showing results (21-30 of 53) with videos related to
Sort By:
Page
of 6
Nature
|
October 6, 1988
GAL4-VP16 is an unusually potent transcriptional activator
I Sadowski, J Ma, S Triezenberg, et al.
Trends in Biotechnology
|
December 29, 2015
Harnessing QbD, Programming Languages, and Automation for Reproducible Biology
Michael I Sadowski, Chris Grant, Tim S Fell
Computational Biology and Chemistry
|
October 18, 2011
Direct correlation analysis improves fold recognition
Michael I Sadowski, Katarzyna Maksimiak, William R Taylor
Proceedings of the National Academy of Sciences of the United States of America
|
December 1, 1991
GAL4 is phosphorylated as a consequence of transcriptional activation
I Sadowski, D Niedbala, K Wood, et al.
Mutation Research
|
April 1, 1984
RK bacterial test for independently measuring chemical toxicity and mutagenicity: short-term forward selection assay
S Hayes, A Gordon, I Sadowski, et al.
Journal of Computational Biology : a Journal of Computational Molecular Cell Biology
|
July 24, 2010
Re-evaluating the "rules" of protein topology
Ben Grainger, Michael I Sadowski, William R Taylor
Gene
|
September 1, 1992
GAL4 fusion vectors for expression in yeast or mammalian cells
I Sadowski, B Bell, P Broad, et al.
Journal of Virology
|
July 11, 1998
Naturally occurring human immunodeficiency virus type 1 long terminal repeats have a frequently observed duplication that binds RBF-2 and represses transcription
M C Estable, B Bell, M Hirst, et al.
European Journal of Biochemistry
|
April 15, 1997
Characterization of the basal and pheromone-stimulated phosphorylation states of Ste12p
W Hung, K A Olson, A Breitkreutz, et al.
Bio Systems
|
August 4, 2005
Automated derivation and refinement of sequence length patterns for protein sequences using evolutionary computation
M I Sadowski, J H Parish, D R Westhead
Page
of 6