Proteins that form cage-like structures have been of much recent cross-disciplinary interest due to their application to bioconjugate and materials chemistry, their biological functions spanning multiple essential cellular processes, and their complex structure, often defined by highly symmetric protein–protein interactions. Thus, establishing the fundamentals of their formation, through detecting and quantifying important protein–protein interactions, could be crucial to understanding essential cellular machinery, and for further development of protein-based technologies. Herein we describe a method to monitor the assembly of protein cages by detecting specific, oligomerization state dependent, protein–protein interactions. Our strategy re...
Understanding the operating principles of life requires complete characterization of cellular biolog...
<div><p>Porous protein cages are supramolecular protein self-assemblies presenting pores that allow ...
Engineered protein cages are promising tools that can be customized for applications in medicine and...
Cage proteins, which assemble into often highly symmetric hollow nanoscale capsules, have great pote...
In nature, it is extremely common to find proteins that assemble into homo-oligomeric complexes from...
Proteins are Nature’s fundamental multitools, fulfilling crucial roles in catalyzing complex chemica...
Porous protein cages are supramolecular protein self-assemblies presenting pores that allow the acce...
The selective detection of specific cells of interest and their effective visualization is important...
Nature uses bottom-up approaches for the controlled assembly of highly ordered hierarchical structur...
Nanotechnology has the potential to revolutionise every facet of human life. One particularly exciti...
One of the major challenges of proteomics today is to increase the power potential for the identific...
Fluorescent proteins and dyes are essential tools for the study of protein trafficking, localization...
Protein nanocages have been directed toward a myriad of applications such as drug delivery and mater...
The use of fluorescently-tagged proteins in microscopy has become routine, and anti-GFP (Green fluor...
The use of fluorescently-tagged proteins in microscopy has become routine, and anti-GFP (Green fluor...
Understanding the operating principles of life requires complete characterization of cellular biolog...
<div><p>Porous protein cages are supramolecular protein self-assemblies presenting pores that allow ...
Engineered protein cages are promising tools that can be customized for applications in medicine and...
Cage proteins, which assemble into often highly symmetric hollow nanoscale capsules, have great pote...
In nature, it is extremely common to find proteins that assemble into homo-oligomeric complexes from...
Proteins are Nature’s fundamental multitools, fulfilling crucial roles in catalyzing complex chemica...
Porous protein cages are supramolecular protein self-assemblies presenting pores that allow the acce...
The selective detection of specific cells of interest and their effective visualization is important...
Nature uses bottom-up approaches for the controlled assembly of highly ordered hierarchical structur...
Nanotechnology has the potential to revolutionise every facet of human life. One particularly exciti...
One of the major challenges of proteomics today is to increase the power potential for the identific...
Fluorescent proteins and dyes are essential tools for the study of protein trafficking, localization...
Protein nanocages have been directed toward a myriad of applications such as drug delivery and mater...
The use of fluorescently-tagged proteins in microscopy has become routine, and anti-GFP (Green fluor...
The use of fluorescently-tagged proteins in microscopy has become routine, and anti-GFP (Green fluor...
Understanding the operating principles of life requires complete characterization of cellular biolog...
<div><p>Porous protein cages are supramolecular protein self-assemblies presenting pores that allow ...
Engineered protein cages are promising tools that can be customized for applications in medicine and...