AbstractMany bacteria assemble extracellular amyloid fibers on their cell surface. Secretion of proteins across membranes and the assembly of complex macromolecular structures must be highly coordinated to avoid the accumulation of potentially toxic intracellular protein aggregates. Extracellular amyloid fiber assembly poses an even greater threat to cellular health due to the highly aggregative nature of amyloids and the inherent toxicity of amyloid assembly intermediates. Therefore, temporal and spatial control of amyloid protein secretion is paramount. The biogenesis and assembly of the extracellular bacterial amyloid curli is an ideal system for studying how bacteria cope with the many challenges of controlled and ordered amyloid assemb...
highly specific. Results: Curli subunits from different bacteria can cross-seed and such interspecie...
Abstract An increasing number of proteins are being shown to assemble into amyloid structures, self-...
Curli amyloid fibrils secreted by Enterobacteriaceae mediate host cell adhesion and contribute to bi...
AbstractMany bacteria assemble extracellular amyloid fibers on their cell surface. Secretion of prot...
Curli amyloid fibers are the major protein component of the extracellular matrix produced by Enterob...
The Earth’s bacterial population is primarily found in heterogeneous communities called biofilms. Ba...
Amyloid fibres are proteinaceous aggregates associated with several human diseases, including Alzhei...
<div><p><em>Escherichia coli</em> and a few other members of the Enterobacteriales can produce funct...
Polypeptide aggregation into amyloid is linked with several debilitating human diseases. Despite the...
Escherichia coli assembles functional amyloid fibers called curli. Produced by many Enterobacteriace...
Curli are functional amyloids produced by proteobacteria like Escherichia coli as part of the extrac...
Curli are thin aggregative fimbriae produced by many Enterobacteriaceae as a structural component of...
ABSTRACT Curli amyloid fibers are produced as part of the extracellular biofilm matrix and are compo...
SummaryEnteric bacteria assemble functional amyloid fibers, curli, on their surfaces that share stru...
Curli amyloid fibrils secreted by Enterobacteriaceae mediate host cell adhesion and contribute to bi...
highly specific. Results: Curli subunits from different bacteria can cross-seed and such interspecie...
Abstract An increasing number of proteins are being shown to assemble into amyloid structures, self-...
Curli amyloid fibrils secreted by Enterobacteriaceae mediate host cell adhesion and contribute to bi...
AbstractMany bacteria assemble extracellular amyloid fibers on their cell surface. Secretion of prot...
Curli amyloid fibers are the major protein component of the extracellular matrix produced by Enterob...
The Earth’s bacterial population is primarily found in heterogeneous communities called biofilms. Ba...
Amyloid fibres are proteinaceous aggregates associated with several human diseases, including Alzhei...
<div><p><em>Escherichia coli</em> and a few other members of the Enterobacteriales can produce funct...
Polypeptide aggregation into amyloid is linked with several debilitating human diseases. Despite the...
Escherichia coli assembles functional amyloid fibers called curli. Produced by many Enterobacteriace...
Curli are functional amyloids produced by proteobacteria like Escherichia coli as part of the extrac...
Curli are thin aggregative fimbriae produced by many Enterobacteriaceae as a structural component of...
ABSTRACT Curli amyloid fibers are produced as part of the extracellular biofilm matrix and are compo...
SummaryEnteric bacteria assemble functional amyloid fibers, curli, on their surfaces that share stru...
Curli amyloid fibrils secreted by Enterobacteriaceae mediate host cell adhesion and contribute to bi...
highly specific. Results: Curli subunits from different bacteria can cross-seed and such interspecie...
Abstract An increasing number of proteins are being shown to assemble into amyloid structures, self-...
Curli amyloid fibrils secreted by Enterobacteriaceae mediate host cell adhesion and contribute to bi...