One of the paramount goals of synthetic biology is to have the ability to tune transcriptional networks to targeted levels of expression at will. As a step in that direction, we have constructed a set of 18 unique binding sites for E. coli RNA Polymerase (RNAP) σ^(70) holoenzyme, designed using a model of sequence-dependent binding energy combined with a thermodynamic model of transcription to produce a targeted level of gene expression. This promoter set allows us to determine the correspondence between the absolute numbers of mRNA molecules or protein products and the predicted promoter binding energies measured in K_(B)T energy units. These binding sites adhere on average to the predicted level of gene expression over orders of magnitude...
The ability to regulate gene expression is of central importance for the adaptability of living orga...
Search for a promoter element by RNA polymerase from the extremely large DNA base sequence is though...
The expression of genes is tightly controlled, predominantly at the point of transcription. RNA poly...
One of the paramount goals of synthetic biology is to have the ability to tune transcriptional netwo...
One of the paramount goals of synthetic biology is to have the ability to tune transcriptional netwo...
<div><p>One of the paramount goals of synthetic biology is to have the ability to tune transcription...
One of the paramount goals of synthetic biology is to have the ability to tune transcriptional netwo...
Although the key promoter elements necessary to drive transcription in Escherichia coli have long be...
Although the key promoter elements necessary to drive transcription in Escherichia coli have long be...
Although the key promoter elements necessary to drive transcription in Escherichia coli have long be...
Although the key promoter elements necessary to drive transcription in Escherichia coli have long be...
Understanding how transcriptional regulatory sequence maps to regulatory function remains a difficul...
Understanding how transcriptional regulatory sequence maps to regulatory function remains a difficul...
Understanding how transcriptional regulatory sequence maps to regulatory function remains a difficul...
The ability to regulate gene expression is of central importance for the adaptability of living orga...
The ability to regulate gene expression is of central importance for the adaptability of living orga...
Search for a promoter element by RNA polymerase from the extremely large DNA base sequence is though...
The expression of genes is tightly controlled, predominantly at the point of transcription. RNA poly...
One of the paramount goals of synthetic biology is to have the ability to tune transcriptional netwo...
One of the paramount goals of synthetic biology is to have the ability to tune transcriptional netwo...
<div><p>One of the paramount goals of synthetic biology is to have the ability to tune transcription...
One of the paramount goals of synthetic biology is to have the ability to tune transcriptional netwo...
Although the key promoter elements necessary to drive transcription in Escherichia coli have long be...
Although the key promoter elements necessary to drive transcription in Escherichia coli have long be...
Although the key promoter elements necessary to drive transcription in Escherichia coli have long be...
Although the key promoter elements necessary to drive transcription in Escherichia coli have long be...
Understanding how transcriptional regulatory sequence maps to regulatory function remains a difficul...
Understanding how transcriptional regulatory sequence maps to regulatory function remains a difficul...
Understanding how transcriptional regulatory sequence maps to regulatory function remains a difficul...
The ability to regulate gene expression is of central importance for the adaptability of living orga...
The ability to regulate gene expression is of central importance for the adaptability of living orga...
Search for a promoter element by RNA polymerase from the extremely large DNA base sequence is though...
The expression of genes is tightly controlled, predominantly at the point of transcription. RNA poly...