Gram-negative bacteria possess specialised biogenesis machineries that facilitate the export of amyloid subunits for construction of a biofilm matrix. The secretion of bacterial functional amyloid requires a bespoke outer-membrane protein channel through which unfolded amyloid substrates are translocated. Here, we combine X-ray crystallography, native mass spectrometry, single-channel electrical recording, molecular simulations and circular dichroism measurements to provide high-resolution structural insight into the functional amyloid transporter from Pseudomonas, FapF. FapF forms a trimer of gated β-barrel channels in which opening is regulated by a helical plug connected to an extended coil-coiled platform spanning the bacterial periplas...
Protein secretion systems are molecular nanomachines used by Gram-negative bacteria to thrive within...
Functional amyloid is produced by many organisms but is particularly well understood in bacteria, wh...
AbstractGram-negative bacteria have evolved numerous systems for the export of proteins across their...
Gram-negative bacteria possess specialised biogenesis machineries that facilitate the export of amyl...
Gram-negative bacteria possess specialised biogenesis machineries that facilitate the export of amyl...
Amyloids are characterised by their innate capacity to aggregate into insoluble fibrils, which are c...
Bacteria often produce extracellular amyloid fibres via a multi-component secretion system. Aggregat...
Functional amyloids can be found in the extracellular matrix produced by many bacteria during biofil...
Gram-negative bacteria possess specialized biogenesis machineries that facilitate the export of amyl...
<div><p>Functional bacterial amyloids (FuBA) are important components in many environmental biofilms...
AbstractMany bacteria assemble extracellular amyloid fibers on their cell surface. Secretion of prot...
Functional bacterial amyloids (FuBA) are important components in many environmental biofilms where t...
Curli are functional amyloid fibres that constitute the major protein component of the extracellular...
An increasing number of proteins are being shown to assemble into amyloid structures, self-seeding f...
Amyloid fibres are proteinaceous aggregates associated with several human diseases, including Alzhei...
Protein secretion systems are molecular nanomachines used by Gram-negative bacteria to thrive within...
Functional amyloid is produced by many organisms but is particularly well understood in bacteria, wh...
AbstractGram-negative bacteria have evolved numerous systems for the export of proteins across their...
Gram-negative bacteria possess specialised biogenesis machineries that facilitate the export of amyl...
Gram-negative bacteria possess specialised biogenesis machineries that facilitate the export of amyl...
Amyloids are characterised by their innate capacity to aggregate into insoluble fibrils, which are c...
Bacteria often produce extracellular amyloid fibres via a multi-component secretion system. Aggregat...
Functional amyloids can be found in the extracellular matrix produced by many bacteria during biofil...
Gram-negative bacteria possess specialized biogenesis machineries that facilitate the export of amyl...
<div><p>Functional bacterial amyloids (FuBA) are important components in many environmental biofilms...
AbstractMany bacteria assemble extracellular amyloid fibers on their cell surface. Secretion of prot...
Functional bacterial amyloids (FuBA) are important components in many environmental biofilms where t...
Curli are functional amyloid fibres that constitute the major protein component of the extracellular...
An increasing number of proteins are being shown to assemble into amyloid structures, self-seeding f...
Amyloid fibres are proteinaceous aggregates associated with several human diseases, including Alzhei...
Protein secretion systems are molecular nanomachines used by Gram-negative bacteria to thrive within...
Functional amyloid is produced by many organisms but is particularly well understood in bacteria, wh...
AbstractGram-negative bacteria have evolved numerous systems for the export of proteins across their...