This article presents data that were obtained through measuring the impact of the Min oscillation on membrane proteins in Escherichia coli by quantitative protemoics analysis. We isolated inner membranes from the wild-type and mutant strains to generate proteomics datasets based on NanoLC-nanoESI-MS/MS mass spectrometry using the isobaric tags for relative and absolute quantitation (iTRAQ) method. The datasets included the raw spectral files from four sample replicates and the processed files using Proteome Discoverer that contained a total of 40,072 MS/MS spectra with confident peptide identifier (FDR<0.01) and the peak intensity of the reporter ions. The data was further filtered, which resulted in an inner membrane proteome of unique pro...
Measuring precise concentrations of proteins can provide insights into biological processes. Here we...
AbstractThe envelope of Escherichia coli is a complex organelle composed of the outer membrane, peri...
In this thesis, the role of the Escherichia coli YidC protein in membrane biogenesis is investigated...
AbstractThis article presents data that were obtained through measuring the impact of the Min oscill...
Biological membranes define cells and cellular compartments and are essential in regulating bidirect...
The Min system of Escherichia coli mediates placement of the division septum at the midcell. It osci...
Due to their physicochemical properties, membrane protein proteomics analyses often require extensiv...
Biological membranes are essential for cell viability. Their functional characteristics strongly dep...
Accurate measurements of cellular protein concentrations are invaluable to quantitative studies of g...
Accurate measurements of cellular protein concentrations are invaluable to quantitative studies of g...
This thesis illustrates the characterization and exploitation of inner membrane proteins in Escheric...
Measuring precise concentrations of proteins can provide insights into biological processes. Here we...
Cell envelope proteins in bacteria are typically difficult to characterize due to their low abundanc...
Data-Independent Acquisition (DIA) is a method to improve consistent identification and precise quan...
Biological membranes are essential for cell viability. Their functional characteristics strongly dep...
Measuring precise concentrations of proteins can provide insights into biological processes. Here we...
AbstractThe envelope of Escherichia coli is a complex organelle composed of the outer membrane, peri...
In this thesis, the role of the Escherichia coli YidC protein in membrane biogenesis is investigated...
AbstractThis article presents data that were obtained through measuring the impact of the Min oscill...
Biological membranes define cells and cellular compartments and are essential in regulating bidirect...
The Min system of Escherichia coli mediates placement of the division septum at the midcell. It osci...
Due to their physicochemical properties, membrane protein proteomics analyses often require extensiv...
Biological membranes are essential for cell viability. Their functional characteristics strongly dep...
Accurate measurements of cellular protein concentrations are invaluable to quantitative studies of g...
Accurate measurements of cellular protein concentrations are invaluable to quantitative studies of g...
This thesis illustrates the characterization and exploitation of inner membrane proteins in Escheric...
Measuring precise concentrations of proteins can provide insights into biological processes. Here we...
Cell envelope proteins in bacteria are typically difficult to characterize due to their low abundanc...
Data-Independent Acquisition (DIA) is a method to improve consistent identification and precise quan...
Biological membranes are essential for cell viability. Their functional characteristics strongly dep...
Measuring precise concentrations of proteins can provide insights into biological processes. Here we...
AbstractThe envelope of Escherichia coli is a complex organelle composed of the outer membrane, peri...
In this thesis, the role of the Escherichia coli YidC protein in membrane biogenesis is investigated...