SummaryLinking the molecular effects of mutations to fitness is central to understanding evolutionary dynamics. Here, we establish a quantitative relation between the global effect of mutations on the E. coli proteome and bacterial fitness. We created E. coli strains with specific destabilizing mutations in the chromosomal folA gene encoding dihydrofolate reductase (DHFR) and quantified the ensuing changes in the abundances of 2,000+ E. coli proteins in mutant strains using tandem mass tags with subsequent LC-MS/MS. mRNA abundances in the same E. coli strains were also quantified. The proteomic effects of mutations in DHFR are quantitatively linked to phenotype: the SDs of the distributions of logarithms of relative (to WT) protein abundanc...
Gene dosage toxicity (GDT) is an important factor that determines optimal levels of protein abundanc...
Identifying mechanisms of molecular adaptation can provide important insights into the process of ph...
Fitness landscapes of drug resistance constitute powerful tools to elucidate mutational pathways of ...
Mutations create the genetic diversity on which selective pressures can act, yet also create structu...
Understanding the mechanisms of evolution requires identification of the molecular basis of the mult...
Protein stability is widely recognized as a major evolutionary constraint. However, the relation bet...
Presented on Tuesday, March 12, 2013, from 11:00 am to 12:00 pm in the Klaus Advanced Computing Buil...
High-throughput sequencing has enabled many powerful approaches in biological research. Here, we rev...
Genotype-fitness maps of evolution have been well characterized for biological components, such as R...
Mutations are central to evolution, providing the genetic variation upon which selection acts. A mut...
The abundance of proteins expressed in a particular environment are primary determinants of an organ...
Enzyme function and evolution are influenced by the larger context of a metabolic pathway. Deleterio...
Horizontal gene transfer (HGT) plays a central role in bacterial evolution, yet the molecular and ce...
Mutations act as a driving force of evolution by providing the genetic variation upon which selectiv...
<div><p>Although the genome contains all the information necessary for maintenance and perpetuation ...
Gene dosage toxicity (GDT) is an important factor that determines optimal levels of protein abundanc...
Identifying mechanisms of molecular adaptation can provide important insights into the process of ph...
Fitness landscapes of drug resistance constitute powerful tools to elucidate mutational pathways of ...
Mutations create the genetic diversity on which selective pressures can act, yet also create structu...
Understanding the mechanisms of evolution requires identification of the molecular basis of the mult...
Protein stability is widely recognized as a major evolutionary constraint. However, the relation bet...
Presented on Tuesday, March 12, 2013, from 11:00 am to 12:00 pm in the Klaus Advanced Computing Buil...
High-throughput sequencing has enabled many powerful approaches in biological research. Here, we rev...
Genotype-fitness maps of evolution have been well characterized for biological components, such as R...
Mutations are central to evolution, providing the genetic variation upon which selection acts. A mut...
The abundance of proteins expressed in a particular environment are primary determinants of an organ...
Enzyme function and evolution are influenced by the larger context of a metabolic pathway. Deleterio...
Horizontal gene transfer (HGT) plays a central role in bacterial evolution, yet the molecular and ce...
Mutations act as a driving force of evolution by providing the genetic variation upon which selectiv...
<div><p>Although the genome contains all the information necessary for maintenance and perpetuation ...
Gene dosage toxicity (GDT) is an important factor that determines optimal levels of protein abundanc...
Identifying mechanisms of molecular adaptation can provide important insights into the process of ph...
Fitness landscapes of drug resistance constitute powerful tools to elucidate mutational pathways of ...