A full understanding of gene regulation requires an understanding of the contributions that the various regulatory regions have on gene expression. Although it is well established that sequences downstream of the main promoter can affect expression, our understanding of the scale of this effect and how it is encoded in the DNA is limited. Here, to measure the effect of native S. cerevisiae 3′ end sequences on expression, we constructed a library of 85 fluorescent reporter strains that differ only in their 3′ end region. Notably, despite being driven by the same strong promoter, our library spans a continuous twelve-fold range of expression values. These measurements correlate with endogenous mRNA levels, suggesting that the 3′ end contribut...
Gene expression is the most fundamental biological process, which is essential for phenotypic variat...
Eukaryotic RNA polymerase (Pol) III terminates transcription at short runs of T residues in the codi...
Gene expression is the most fundamental biological process, which is essential for phenotypic variat...
A full understanding of gene regulation requires an understanding of the contributions that the vari...
<div><p>A full understanding of gene regulation requires an understanding of the contributions that ...
<div><p>The 3’end genomic region encodes a wide range of regulatory process including mRNA stability...
The 3’end genomic region encodes a wide range of regulatory process including mRNA sta-bility, 3 ’ e...
Abstract Background The 3′ untranslated region (UT...
<div><p>Gene expression varies widely between individuals of a population, and regulatory change can...
<p>(<b>A</b>) Dynamic range of YFP levels of library strains at different galactose induction levels...
In eukaryotic cells, remarkably orchestrated regulatory steps ensure the availability of proteins an...
<div><p>Deducing generic causal relations between RNA transcript features and protein expression pro...
This thesis describes an attempt to define the nucleotide sequences involved in specifying the locat...
The terminator regions of eukaryotes encode functional elements in the 3′ untranslated region (3′-UT...
Epitope-tagging by homologous recombination is ubiquitously used to study gene expression, protein l...
Gene expression is the most fundamental biological process, which is essential for phenotypic variat...
Eukaryotic RNA polymerase (Pol) III terminates transcription at short runs of T residues in the codi...
Gene expression is the most fundamental biological process, which is essential for phenotypic variat...
A full understanding of gene regulation requires an understanding of the contributions that the vari...
<div><p>A full understanding of gene regulation requires an understanding of the contributions that ...
<div><p>The 3’end genomic region encodes a wide range of regulatory process including mRNA stability...
The 3’end genomic region encodes a wide range of regulatory process including mRNA sta-bility, 3 ’ e...
Abstract Background The 3′ untranslated region (UT...
<div><p>Gene expression varies widely between individuals of a population, and regulatory change can...
<p>(<b>A</b>) Dynamic range of YFP levels of library strains at different galactose induction levels...
In eukaryotic cells, remarkably orchestrated regulatory steps ensure the availability of proteins an...
<div><p>Deducing generic causal relations between RNA transcript features and protein expression pro...
This thesis describes an attempt to define the nucleotide sequences involved in specifying the locat...
The terminator regions of eukaryotes encode functional elements in the 3′ untranslated region (3′-UT...
Epitope-tagging by homologous recombination is ubiquitously used to study gene expression, protein l...
Gene expression is the most fundamental biological process, which is essential for phenotypic variat...
Eukaryotic RNA polymerase (Pol) III terminates transcription at short runs of T residues in the codi...
Gene expression is the most fundamental biological process, which is essential for phenotypic variat...