about
Inferring gene regulatory logic from high-throughput measurements of thousands of systematically designed promoters.Manipulating nucleosome disfavoring sequences allows fine-tune regulation of gene expression in yeast.Probing the effect of promoters on noise in gene expression using thousands of designed sequences.Measurements of the impact of 3' end sequences on gene expression reveal wide range and sequence dependent effects.Compensation for differences in gene copy number among yeast ribosomal proteins is encoded within their promoters.A Minimalistic Resource Allocation Model to Explain Ubiquitous Increase in Protein Expression with Growth Rate.Noise in gene expression is coupled to growth rate.Sequence features of yeast and human core promoters that are predictive of maximal promoter activityPromoters maintain their relative activity levels under different growth conditions.Fixated on fixation: using ChIP to interrogate the dynamics of chromatin interactions.MIBI-TOF: A multiplexed imaging platform relates cellular phenotypes and tissue structure
P50
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P50
description
researcher
@en
wetenschapper
@nl
հետազոտող
@hy
name
Leeat Keren
@ast
Leeat Keren
@en
Leeat Keren
@es
Leeat Keren
@nl
Leeat Keren
@sl
type
label
Leeat Keren
@ast
Leeat Keren
@en
Leeat Keren
@es
Leeat Keren
@nl
Leeat Keren
@sl
prefLabel
Leeat Keren
@ast
Leeat Keren
@en
Leeat Keren
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Leeat Keren
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Leeat Keren
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P106
P31
P496
0000-0002-6799-6303