Advances in synthetic biology have resulted in the development of genetic tools that support the design of complex biological systems encoding desired functions. The majority of efforts have focused on the development of regulatory tools in bacteria, whereas fewer tools exist for the tuning of expression levels in eukaryotic organisms. Here, we describe a novel class of RNA-based control modules that provide predictable tuning of expression levels in the yeast Saccharomyces cerevisiae. A library of synthetic control modules that act through posttranscriptional RNase cleavage mechanisms was generated through an in vivo screen, in which structural engineering methods were applied to enhance the insulation and modularity of the resulting compo...
Yeast species such as Saccharomyces cerevisiae have been exploited by humans for millennia and so it...
This short review considers to what extent posttranscriptional steps of gene expression can provide ...
Our ability to efficiently and predictably program cells is central to the fields of bioengineering ...
Advances in synthetic biology have resulted in the development of genetic tools that support the des...
The design of synthetic gene networks requires an extensive genetic toolbox to control the activitie...
Synthetic biological systems promise to combine the spectacular diversity of biological functionalit...
The design of synthetic gene networks requires an extensive genetic toolbox to control the activitie...
AbstractYeast species such as Saccharomyces cerevisiae have been exploited by humans for millennia a...
Modular parts for tuning translation are prevalent in prokaryotic synthetic biology but lacking for ...
Complexity is arguably the biggest challenge to the field of synthetic biology today. As synthetic c...
Sustainable production of chemicals, materials, and pharmaceuticals is increasingly performed by gen...
SummaryEukaryotic cells execute complex transcriptional programs in which specific loci throughout t...
"The revolution of genomics and growth of systems biology urged the creation of synthetic biology, ...
Sustainable production of chemicals, materials, and pharmaceuticals is increasingly performed by gen...
The engineering of biological systems requires a set of molecular tools that can be predictably appl...
Yeast species such as Saccharomyces cerevisiae have been exploited by humans for millennia and so it...
This short review considers to what extent posttranscriptional steps of gene expression can provide ...
Our ability to efficiently and predictably program cells is central to the fields of bioengineering ...
Advances in synthetic biology have resulted in the development of genetic tools that support the des...
The design of synthetic gene networks requires an extensive genetic toolbox to control the activitie...
Synthetic biological systems promise to combine the spectacular diversity of biological functionalit...
The design of synthetic gene networks requires an extensive genetic toolbox to control the activitie...
AbstractYeast species such as Saccharomyces cerevisiae have been exploited by humans for millennia a...
Modular parts for tuning translation are prevalent in prokaryotic synthetic biology but lacking for ...
Complexity is arguably the biggest challenge to the field of synthetic biology today. As synthetic c...
Sustainable production of chemicals, materials, and pharmaceuticals is increasingly performed by gen...
SummaryEukaryotic cells execute complex transcriptional programs in which specific loci throughout t...
"The revolution of genomics and growth of systems biology urged the creation of synthetic biology, ...
Sustainable production of chemicals, materials, and pharmaceuticals is increasingly performed by gen...
The engineering of biological systems requires a set of molecular tools that can be predictably appl...
Yeast species such as Saccharomyces cerevisiae have been exploited by humans for millennia and so it...
This short review considers to what extent posttranscriptional steps of gene expression can provide ...
Our ability to efficiently and predictably program cells is central to the fields of bioengineering ...