Synthetic biology attempts to make inherently chaotic biological systems both predictable and useful. To achieve this, well characterized genetic parts are necessary both to control genetic circuitry as well as to catalyze specific chemical reactions. While the discipline is maturing, the number of chemical reactions we can catalyze and the number of means to control the expression of these enzymes is still extremely limited in the context of what occurs in nature. It therefore behooves the discipline to rapidly explore nature for biological novelty so we can then leverage it for biological programming. Herein I utilize multiple functional genomics techniques to uncover novel enzymatic and regulatory elements within the lysine catabolism of...
By the time the complete genome sequence of the soil bacterium Pseudomonas putida KT2440 was publish...
Pseudomonas putida uses L-lysine as the sole carbon and nitrogen source which preferentially require...
<p>By the time the complete genome sequence of the soil bacterium Pseudomonas putida KT2440 was publ...
Despite intensive study for 50 years, the biochemical and genetic links between lysine metabolism an...
Despite intensive study for 50 years, the biochemical and genetic links between lysine metabolism an...
P. putida lysine metabolism can produce multiple commodity chemicals, conferring great biotechnologi...
With its ability to catabolize a wide variety of carbon sources and a growing engineering toolkit, P...
With its ability to catabolize a wide variety of carbon sources and a growing engineering toolkit, P...
With its ability to catabolize a wide variety of carbon sources and a growing engineering toolkit, P...
Synthetic biology has progressed to the point where genes that encode whole metabolic pathways and e...
Exceeding planetary boundaries, and in particular climate change, is quickly forcing the global econ...
Synthetic biology modifies biological systems with the aim of creating new biological parts, devices...
An organism with robust catabolic capabilities and high tolerance to many industrial bioprocess stre...
A cornerstone of biotechnology is the use of microorganisms for the efficient production of chemical...
Organisms from all kingdoms of life represent a rich source for valuable natural products with vario...
By the time the complete genome sequence of the soil bacterium Pseudomonas putida KT2440 was publish...
Pseudomonas putida uses L-lysine as the sole carbon and nitrogen source which preferentially require...
<p>By the time the complete genome sequence of the soil bacterium Pseudomonas putida KT2440 was publ...
Despite intensive study for 50 years, the biochemical and genetic links between lysine metabolism an...
Despite intensive study for 50 years, the biochemical and genetic links between lysine metabolism an...
P. putida lysine metabolism can produce multiple commodity chemicals, conferring great biotechnologi...
With its ability to catabolize a wide variety of carbon sources and a growing engineering toolkit, P...
With its ability to catabolize a wide variety of carbon sources and a growing engineering toolkit, P...
With its ability to catabolize a wide variety of carbon sources and a growing engineering toolkit, P...
Synthetic biology has progressed to the point where genes that encode whole metabolic pathways and e...
Exceeding planetary boundaries, and in particular climate change, is quickly forcing the global econ...
Synthetic biology modifies biological systems with the aim of creating new biological parts, devices...
An organism with robust catabolic capabilities and high tolerance to many industrial bioprocess stre...
A cornerstone of biotechnology is the use of microorganisms for the efficient production of chemical...
Organisms from all kingdoms of life represent a rich source for valuable natural products with vario...
By the time the complete genome sequence of the soil bacterium Pseudomonas putida KT2440 was publish...
Pseudomonas putida uses L-lysine as the sole carbon and nitrogen source which preferentially require...
<p>By the time the complete genome sequence of the soil bacterium Pseudomonas putida KT2440 was publ...