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Molecular Systems Biology
|
July 17, 2008
The incoherent feed-forward loop can generate non-monotonic input functions for genes
Shai Kaplan, Anat Bren, Erez Dekel, et al.
BMC Systems Biology
|
July 14, 2011
Negative auto-regulation increases the input dynamic-range of the arabinose system of Escherichia coli
Daniel Madar, Erez Dekel, Anat Bren, et al.
Journal of Molecular Biology
|
September 25, 2012
Surface growth of a motile bacterial population resembles growth in a chemostat
Daniel A Koster, Avraham Mayo, Anat Bren, et al.
ACS Synthetic Biology
|
March 18, 2025
Preventing Multimer Formation in Commonly Used Synthetic Biology Plasmids
Elizabeth Vaisbourd, Anat Bren, Uri Alon, et al.
Molecular Cell
|
April 1, 2008
Diverse two-dimensional input functions control bacterial sugar genes
Shai Kaplan, Anat Bren, Alon Zaslaver, et al.
BMC Systems Biology
|
March 28, 2013
The last generation of bacterial growth in limiting nutrient
Anat Bren, Yuval Hart, Erez Dekel, et al.
Molecular Cell
|
May 29, 2012
Mode of regulation and the insulation of bacterial gene expression
Vered Sasson, Irit Shachrai, Anat Bren, et al.
Cell
|
February 6, 2024
A synthetic differentiation circuit in Escherichia coli for suppressing mutant takeover
David S Glass, Anat Bren, Elizabeth Vaisbourd, et al.
BMC Systems Biology
|
January 1, 2014
Promoter activity dynamics in the lag phase of Escherichia coli
Daniel Madar, Erez Dekel, Anat Bren, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
December 14, 2023
Tradeoffs in bacterial physiology determine the efficiency of antibiotic killing
Anat Bren, David S Glass, Yael Korem Kohanim, et al.
Page
of 3
Search research articles
Search
Showing results (1-10 of 24) with videos related to
Sort By:
Page
of 3
Molecular Systems Biology
|
July 17, 2008
The incoherent feed-forward loop can generate non-monotonic input functions for genes
Shai Kaplan, Anat Bren, Erez Dekel, et al.
BMC Systems Biology
|
July 14, 2011
Negative auto-regulation increases the input dynamic-range of the arabinose system of Escherichia coli
Daniel Madar, Erez Dekel, Anat Bren, et al.
Journal of Molecular Biology
|
September 25, 2012
Surface growth of a motile bacterial population resembles growth in a chemostat
Daniel A Koster, Avraham Mayo, Anat Bren, et al.
ACS Synthetic Biology
|
March 18, 2025
Preventing Multimer Formation in Commonly Used Synthetic Biology Plasmids
Elizabeth Vaisbourd, Anat Bren, Uri Alon, et al.
Molecular Cell
|
April 1, 2008
Diverse two-dimensional input functions control bacterial sugar genes
Shai Kaplan, Anat Bren, Alon Zaslaver, et al.
BMC Systems Biology
|
March 28, 2013
The last generation of bacterial growth in limiting nutrient
Anat Bren, Yuval Hart, Erez Dekel, et al.
Molecular Cell
|
May 29, 2012
Mode of regulation and the insulation of bacterial gene expression
Vered Sasson, Irit Shachrai, Anat Bren, et al.
Cell
|
February 6, 2024
A synthetic differentiation circuit in Escherichia coli for suppressing mutant takeover
David S Glass, Anat Bren, Elizabeth Vaisbourd, et al.
BMC Systems Biology
|
January 1, 2014
Promoter activity dynamics in the lag phase of Escherichia coli
Daniel Madar, Erez Dekel, Anat Bren, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
December 14, 2023
Tradeoffs in bacterial physiology determine the efficiency of antibiotic killing
Anat Bren, David S Glass, Yael Korem Kohanim, et al.
Page
of 3