Recent advances in DNA sequencing, synthesis and genetic engineering have enabled the introduction of choice DNA sequences into living cells. This is an exciting prospect for the field of industrial biotechnology, which aims at using microorganisms to produce foods, beverages, pharmaceuticals and fine- and bulk chemicals in a sustainable fashion. Biotechnologists often achieve this by genetically engineering these microorganisms to introduce novel production pathways using genes found in other strains or species. However, detailed understanding of gene expression regulation remains elusive, especially at the level of translation; thus, when it comes to writing DNA to express proteins at user-specified levels, we are still miles away.<br/><b...
SummaryThe rapid improvements in DNA synthesis technology hold the potential to revolutionize biosci...
The technologies that enable writing and editing of DNA form the foundation of modern molecular biol...
Protein synthesis is the most energetically expensive process in prokaryotes. Understanding how pro...
Recent advances in DNA sequencing, synthesis and genetic engineering have enabled the introduction o...
Proteins are a ubiquitous and indispensable element for every living organism, from simple bacteria ...
Thesis: Ph. D. in Bioinformatics and Integrative Genomics, Harvard-MIT Program in Health Sciences an...
Thesis (Ph.D.)--University of Washington, 2016-06Over the past decade, new sequencing technologies h...
The study of protein synthesis, and the study of gene expression in general, has accelerated in rece...
Protein synthesis is one of the central elements in every living cell. For this process, the mRNAs c...
Understanding protein synthesis in bacteria and humans is important for understanding the origin of ...
Translation of RNA to protein is a core process for any living organism. While for some steps of thi...
AbstractThe sequencing of genomes of several organisms and advances in high throughput technologies ...
AbstractThe genetic information in DNA is transcribed to mRNA and then translated to proteins, which...
Protein synthesis is a template polymerization process composed by three main steps: initiation, elo...
Translation of RNA to protein is a core process for any living organism. While for some steps of thi...
SummaryThe rapid improvements in DNA synthesis technology hold the potential to revolutionize biosci...
The technologies that enable writing and editing of DNA form the foundation of modern molecular biol...
Protein synthesis is the most energetically expensive process in prokaryotes. Understanding how pro...
Recent advances in DNA sequencing, synthesis and genetic engineering have enabled the introduction o...
Proteins are a ubiquitous and indispensable element for every living organism, from simple bacteria ...
Thesis: Ph. D. in Bioinformatics and Integrative Genomics, Harvard-MIT Program in Health Sciences an...
Thesis (Ph.D.)--University of Washington, 2016-06Over the past decade, new sequencing technologies h...
The study of protein synthesis, and the study of gene expression in general, has accelerated in rece...
Protein synthesis is one of the central elements in every living cell. For this process, the mRNAs c...
Understanding protein synthesis in bacteria and humans is important for understanding the origin of ...
Translation of RNA to protein is a core process for any living organism. While for some steps of thi...
AbstractThe sequencing of genomes of several organisms and advances in high throughput technologies ...
AbstractThe genetic information in DNA is transcribed to mRNA and then translated to proteins, which...
Protein synthesis is a template polymerization process composed by three main steps: initiation, elo...
Translation of RNA to protein is a core process for any living organism. While for some steps of thi...
SummaryThe rapid improvements in DNA synthesis technology hold the potential to revolutionize biosci...
The technologies that enable writing and editing of DNA form the foundation of modern molecular biol...
Protein synthesis is the most energetically expensive process in prokaryotes. Understanding how pro...