SummaryBacterial protein synthesis is an essential, conserved, and environmentally responsive process. Yet, many of its components and dependencies remain unidentified. To address this gap, we used quantitative synthetic genetic arrays to map functional relationships among >48,000 gene pairs in Escherichia coli under four culture conditions differing in temperature and nutrient availability. The resulting data provide global functional insights into the roles and associations of genes, pathways, and processes important for efficient translation, growth, and environmental adaptation. We predict and independently verify the requirement of unannotated genes for normal translation, including a previously unappreciated role of YhbY in 30S biogen...
Chemotaxis allows bacteria to colonize their environment more efficiently and to find optimal growth...
Chemotaxis allows bacteria to colonize their environment more efficiently and to find optimal growth...
The genetic code is redundant, meaning that most amino acids can be encoded by more than one codon. ...
Bacterial protein synthesis is an essential, conserved, and environmentally responsive process. Yet,...
SummaryBacterial protein synthesis is an essential, conserved, and environmentally responsive proces...
Protein synthesis is a template polymerization process composed by three main steps: initiation, elo...
The genetic code underlying protein synthesis is a canonical example of a degenerate biological syst...
Bacterial protein synthesis depends on the coordination of a complex, multi-component machinery that...
Protein synthesis is the most energetically expensive process in prokaryotes. Understanding how pro...
Complex regulatory programs control cell adaptation to environmental changes by setting condition-sp...
Bacteria must rapidly respond to both intracellular and environmental changes to survive. One critic...
AbstractThe genetic information in DNA is transcribed to mRNA and then translated to proteins, which...
The research presented in this thesis attempts to address research questions related to the role of ...
Bacterial proteins are translated with precisely determined rates to meet cellular demand. In contra...
AbstractThe sequencing of genomes of several organisms and advances in high throughput technologies ...
Chemotaxis allows bacteria to colonize their environment more efficiently and to find optimal growth...
Chemotaxis allows bacteria to colonize their environment more efficiently and to find optimal growth...
The genetic code is redundant, meaning that most amino acids can be encoded by more than one codon. ...
Bacterial protein synthesis is an essential, conserved, and environmentally responsive process. Yet,...
SummaryBacterial protein synthesis is an essential, conserved, and environmentally responsive proces...
Protein synthesis is a template polymerization process composed by three main steps: initiation, elo...
The genetic code underlying protein synthesis is a canonical example of a degenerate biological syst...
Bacterial protein synthesis depends on the coordination of a complex, multi-component machinery that...
Protein synthesis is the most energetically expensive process in prokaryotes. Understanding how pro...
Complex regulatory programs control cell adaptation to environmental changes by setting condition-sp...
Bacteria must rapidly respond to both intracellular and environmental changes to survive. One critic...
AbstractThe genetic information in DNA is transcribed to mRNA and then translated to proteins, which...
The research presented in this thesis attempts to address research questions related to the role of ...
Bacterial proteins are translated with precisely determined rates to meet cellular demand. In contra...
AbstractThe sequencing of genomes of several organisms and advances in high throughput technologies ...
Chemotaxis allows bacteria to colonize their environment more efficiently and to find optimal growth...
Chemotaxis allows bacteria to colonize their environment more efficiently and to find optimal growth...
The genetic code is redundant, meaning that most amino acids can be encoded by more than one codon. ...