Engineering cell factories for producing biofuels and pharmaceuticals has spurred great interests to develop rapid and efficient synthetic biology tools customized for modular pathway engineering. Along the way, combinatorial gene expression control through modification of regulatory element offered tremendous opportunity for fine-tuning gene expression and generating digital-like genetic circuits. In this report, we present an efficient evolutionary approach to build a range of regulatory control elements. The reported method allows for rapid construction of promoter, 5′UTR, terminator and trans-activating RNA libraries. Synthetic overlapping oligos with high portion of degenerate nucleotides flanking the regulatory element could be effici...
Mammalian synthetic biology may provide novel therapeutic strategies, help decipher new paths for dr...
International audienceMammalian synthetic biology may provide novel therapeutic strategies, help dec...
ENGINEERING AND CHARACTERIZING RNA GENETIC REGULATORS Sarai Itagaki Meyer, Ph.D. Cornell University ...
In synthetic biology, researchers assemble biological components in new ways to produce systems with...
The advancements in the field of metabolic engineering and synthetic biology have allowed the rapid ...
The engineering of biological systems requires a set of molecular tools that can be predictably appl...
The engineering of biological systems to achieve specific purposes requires design tools that functi...
A longstanding goal of synthetic biology has been the programmable control of cellular functions. Ce...
The control of gene expression is an important tool for metabolic engineering, biomedicine, and biom...
Developing the next generation of medical, agricultural and sustainability biotechnology is limited ...
Our ability to efficiently and predictably program cells is central to the fields of bioengineering ...
Here are the raw fluorescence and OD data for the promoter, RBS, terminator, and trans-activating RN...
The discovery and study of a vast number of regulatory RNAs in all kingdoms of life over the past de...
Abstract: The architecture of gene regulatory networks is reminiscent of electronic circuits. Modula...
textIn this work, we seek to expand synthetic in vitro biological systems by using water-in-oil emul...
Mammalian synthetic biology may provide novel therapeutic strategies, help decipher new paths for dr...
International audienceMammalian synthetic biology may provide novel therapeutic strategies, help dec...
ENGINEERING AND CHARACTERIZING RNA GENETIC REGULATORS Sarai Itagaki Meyer, Ph.D. Cornell University ...
In synthetic biology, researchers assemble biological components in new ways to produce systems with...
The advancements in the field of metabolic engineering and synthetic biology have allowed the rapid ...
The engineering of biological systems requires a set of molecular tools that can be predictably appl...
The engineering of biological systems to achieve specific purposes requires design tools that functi...
A longstanding goal of synthetic biology has been the programmable control of cellular functions. Ce...
The control of gene expression is an important tool for metabolic engineering, biomedicine, and biom...
Developing the next generation of medical, agricultural and sustainability biotechnology is limited ...
Our ability to efficiently and predictably program cells is central to the fields of bioengineering ...
Here are the raw fluorescence and OD data for the promoter, RBS, terminator, and trans-activating RN...
The discovery and study of a vast number of regulatory RNAs in all kingdoms of life over the past de...
Abstract: The architecture of gene regulatory networks is reminiscent of electronic circuits. Modula...
textIn this work, we seek to expand synthetic in vitro biological systems by using water-in-oil emul...
Mammalian synthetic biology may provide novel therapeutic strategies, help decipher new paths for dr...
International audienceMammalian synthetic biology may provide novel therapeutic strategies, help dec...
ENGINEERING AND CHARACTERIZING RNA GENETIC REGULATORS Sarai Itagaki Meyer, Ph.D. Cornell University ...