In this issue, Leading Edge highlights synthetic biology, a field that is deepening our understanding of the design principles of life and increasing our mastery of biological systems for practical applications in biotechnology and medicine. Reports from the recent literature, discussed in this Synthetic Biology Select, include the rational design of a functional enzyme, an approach for creating more stable proteins, and systems-level analyses that reveal unexpected sophistication in the regulatory networks of microorganisms
Like life itself, synthetic biology began with unicellular organisms. Early synthetic biologists bu...
A book review on - Synthetic biology: tools and applications by Huimin Zhao, Academic Press/Elsevie...
Advances in synthetic biology are contributing to diverse research areas, from basic biology to biom...
One of the key features of biological systems is complexity, where the behavior of high level struct...
Cognition of life from the perspective of synthetic biology centers on the design, construction, and...
Synthetic biology is interpreted as the engineering-driven building of increasingly complex biologic...
<p>Driven by the development of new technologies and an ever expanding knowledge base of molecular a...
Synthetic biology is interpreted as the engineering-driven building of increasingly complex biologic...
Technological advance requires a combination of inspiration, insight, and the know-how to combine al...
Synthetic biology is interpreted as the engineering-driven building of increasingly complex biologic...
In synthetic biology, biological cells and processes are dismantled and reassembled to make novel sy...
A review. In recent years, significant progress has been made in the computational design of functio...
Synthetic biology modifies biological systems with the aim of creating new biological parts, devices...
Protein design is a challenging problem. We do not fully understand the rules of protein folding, an...
Synthetic biology is principally concerned with the rational design and engineering of biologically ...
Like life itself, synthetic biology began with unicellular organisms. Early synthetic biologists bu...
A book review on - Synthetic biology: tools and applications by Huimin Zhao, Academic Press/Elsevie...
Advances in synthetic biology are contributing to diverse research areas, from basic biology to biom...
One of the key features of biological systems is complexity, where the behavior of high level struct...
Cognition of life from the perspective of synthetic biology centers on the design, construction, and...
Synthetic biology is interpreted as the engineering-driven building of increasingly complex biologic...
<p>Driven by the development of new technologies and an ever expanding knowledge base of molecular a...
Synthetic biology is interpreted as the engineering-driven building of increasingly complex biologic...
Technological advance requires a combination of inspiration, insight, and the know-how to combine al...
Synthetic biology is interpreted as the engineering-driven building of increasingly complex biologic...
In synthetic biology, biological cells and processes are dismantled and reassembled to make novel sy...
A review. In recent years, significant progress has been made in the computational design of functio...
Synthetic biology modifies biological systems with the aim of creating new biological parts, devices...
Protein design is a challenging problem. We do not fully understand the rules of protein folding, an...
Synthetic biology is principally concerned with the rational design and engineering of biologically ...
Like life itself, synthetic biology began with unicellular organisms. Early synthetic biologists bu...
A book review on - Synthetic biology: tools and applications by Huimin Zhao, Academic Press/Elsevie...
Advances in synthetic biology are contributing to diverse research areas, from basic biology to biom...