Promoters process signals through recruitment of transcription factors and RNA polymerase, and dynamic changes in promoter activity constitute a major noise source in gene expression. However, it is barely understood how complex promoter architectures determine key features of promoter dynamics. Here, we employ prototypical promoters of yeast ribosomal protein genes as well as simplified versions thereof to analyze the relations among promoter design, complexity, and function. These promoters combine the action of a general regulatory factor with that of specific transcription factors, a common motif of many eukaryotic promoters. By comprehensively analyzing stationary and dynamic promoter properties, this model-based approach enables us to...
Evolutionary changes in gene expression are a main driver of phenotypic evolution. In yeast, genes t...
According to recent experimental evidence, promoter architecture, defined by the number, strength an...
The ability to regulate gene expression is of central importance for the adaptability of living orga...
Gene transcription requires a sequence of promoter state transitions, including chromatin remodeling...
Many cellular signaling pathways exhibit a bowtie topology: multiple distinct signal inputs converge...
Noise in expression of individual genes gives rise to variations in activity of cellular pathways an...
AbstractGenes in eukaryotic cells are typically regulated by complex promoters containing multiple b...
Noise in the expression of a gene produces fluctuations in the concentration of the gene product. Th...
According to recent experimental evidence, promoter architecture, defined by the number, strength an...
In yeast, ribosome production is controlled transcriptionally by tight coregulation of the 138 ribos...
The number of mRNA and protein molecules expressed from a single gene molecule fluctuates over time....
The number of mRNA and protein molecules expressed from a single gene molecule fluctuates over time....
Summary: Organisms regulate gene expression through changes in the activity of transcription factors...
<div><p>The number of mRNA and protein molecules expressed from a single gene molecule fluctuates ov...
Transcription factor binding sites (TFBS) are being discovered at a rapid pace1, 2. We must now begi...
Evolutionary changes in gene expression are a main driver of phenotypic evolution. In yeast, genes t...
According to recent experimental evidence, promoter architecture, defined by the number, strength an...
The ability to regulate gene expression is of central importance for the adaptability of living orga...
Gene transcription requires a sequence of promoter state transitions, including chromatin remodeling...
Many cellular signaling pathways exhibit a bowtie topology: multiple distinct signal inputs converge...
Noise in expression of individual genes gives rise to variations in activity of cellular pathways an...
AbstractGenes in eukaryotic cells are typically regulated by complex promoters containing multiple b...
Noise in the expression of a gene produces fluctuations in the concentration of the gene product. Th...
According to recent experimental evidence, promoter architecture, defined by the number, strength an...
In yeast, ribosome production is controlled transcriptionally by tight coregulation of the 138 ribos...
The number of mRNA and protein molecules expressed from a single gene molecule fluctuates over time....
The number of mRNA and protein molecules expressed from a single gene molecule fluctuates over time....
Summary: Organisms regulate gene expression through changes in the activity of transcription factors...
<div><p>The number of mRNA and protein molecules expressed from a single gene molecule fluctuates ov...
Transcription factor binding sites (TFBS) are being discovered at a rapid pace1, 2. We must now begi...
Evolutionary changes in gene expression are a main driver of phenotypic evolution. In yeast, genes t...
According to recent experimental evidence, promoter architecture, defined by the number, strength an...
The ability to regulate gene expression is of central importance for the adaptability of living orga...