The field of proteomics is poised for a single-molecule revolution – enabling more comprehensive analysis of the proteins in a sample with increased sensitivity, reproducibility, and accessibility.
Mapping the hidden world: Discover how this groundbreaking catalog of nearly one billion small proteins is set to transform our understanding of microbial life. In a recent study published in the ...
Universitat Autonoma de Barcelona (UAB) researchers have produced the most complete map of the bacterial essential interactome, i.e. how proteins combine and interact to perform functions essential ...
A unique method to screen large-scale libraries for industrially useful bacterial strains was recently developed by Tokyo Tech researchers. The simple approach combines biosensors and microfluidics to ...
In what they labeled a “surprising” finding, Johns Hopkins Medicine researchers studying bacteria from freshwater lakes and soil say they have determined a protein’s essential role in maintaining the ...
Shigella, a bacterial pathogen that causes dysentery and is the leading cause of childhood diarrheal diseases, inserts a pore called a translocon into an infected person's intestinal cells and then ...
Delivering Single-Molecule Proteomics at Scale using Protein Identification by Short epitope Mapping
The proteome is perhaps the most dynamic and valuable source of functional biological insight. Here, we introduce a novel single-molecule proteomic analysis approach that includes novel biochemistry ...
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