Prokaryotes mostly lack membranous compartments that are typical of eukaryotic cells, but instead, they have various protein-based organelles. These include bacterial microcompartments like the carboxysome and the virus-like nanocompartment encapsulin. Encapsulins have an adaptable mechanism for enzyme packaging, which makes it an attractive platform to carry a foreign protein cargo. Here we investigate the assembly pathways and mechanical properties of the cargo-free and cargo-loaded nanocompartments, using a combination of native mass spectrometry, atomic force microscopy and multiscale computational molecular modeling. We show that encapsulin dimers assemble into rigid single-enzyme bacterial containers. Moreover, we demonstrate that car...
Bacteria and Archaea use proteinaceous compartments for a variety of different reasons such as creat...
For many decades, it was thought that the phenomenon of cellular compartmentalization was exclusive ...
Living cells compartmentalize materials and enzymatic reactions to increase metabolic efficiency. Wh...
Prokaryotes mostly lack membranous compartments that are typical of eukaryotic cells, but instead, t...
Prokaryotes mostly lack membranous compartments that are typical of eukaryotic cells, but instead, t...
Prokaryotes mostly lack membranous compartments that are typical of eukaryotic cells, but instead, t...
Bacterial nanocompartments, also known as encapsulins, are an emerging class of protein-based 'organ...
Recently, a new class of prokaryotic compartments, collectively called encapsulins or protein nanoco...
<div><p>Bacterial microcompartments are large, roughly icosahedral shells that assemble around enzym...
Bacterial microcompartments are large, roughly icosahedral shells that assemble around enzymes and r...
Recent years have witnessed the emergence of bacterial semiorganelle encapsulins as promising platfo...
Encapsulins are proteinaceous nanocontainers, constructed by a single species of shell protein that ...
Encapsulins are proteinaceous nanocontainers, constructed by a single species of shell protein that ...
Self-assembling protein nanocontainers are promising candidates for an increasingly wide scope of pu...
Nature uses bottom-up approaches for the controlled assembly of highly ordered hierarchical structur...
Bacteria and Archaea use proteinaceous compartments for a variety of different reasons such as creat...
For many decades, it was thought that the phenomenon of cellular compartmentalization was exclusive ...
Living cells compartmentalize materials and enzymatic reactions to increase metabolic efficiency. Wh...
Prokaryotes mostly lack membranous compartments that are typical of eukaryotic cells, but instead, t...
Prokaryotes mostly lack membranous compartments that are typical of eukaryotic cells, but instead, t...
Prokaryotes mostly lack membranous compartments that are typical of eukaryotic cells, but instead, t...
Bacterial nanocompartments, also known as encapsulins, are an emerging class of protein-based 'organ...
Recently, a new class of prokaryotic compartments, collectively called encapsulins or protein nanoco...
<div><p>Bacterial microcompartments are large, roughly icosahedral shells that assemble around enzym...
Bacterial microcompartments are large, roughly icosahedral shells that assemble around enzymes and r...
Recent years have witnessed the emergence of bacterial semiorganelle encapsulins as promising platfo...
Encapsulins are proteinaceous nanocontainers, constructed by a single species of shell protein that ...
Encapsulins are proteinaceous nanocontainers, constructed by a single species of shell protein that ...
Self-assembling protein nanocontainers are promising candidates for an increasingly wide scope of pu...
Nature uses bottom-up approaches for the controlled assembly of highly ordered hierarchical structur...
Bacteria and Archaea use proteinaceous compartments for a variety of different reasons such as creat...
For many decades, it was thought that the phenomenon of cellular compartmentalization was exclusive ...
Living cells compartmentalize materials and enzymatic reactions to increase metabolic efficiency. Wh...