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 periplasm. Although FapF represents a unique type of secretion system, it shares mechanistic features with a diverse range of peptide translocation systems. Our findings highlight alternative strategies for handling and export of amyloid protein sequences.Gram-negative bacteria assemble biofilms from amyloid fibres, which translocate across the outer membrane as unfolded amyloid precursors through a secretion system. Here, the authors characterise the structural details of the amyloid transporter FapF in Pseudomonas.
A new class of hybrid secretion system is employed in Pseudomonas amyloid biogenesis.
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作者:Rouse Sarah L, Hawthorne William J, Berry Jamie-Lee, Chorev Dror S, Ionescu Sandra A, Lambert Sebastian, Stylianou Fisentzos, Ewert Wiebke, Mackie Uma, Morgan R Marc L, Otzen Daniel, Herbst Florian-Alexander, Nielsen Per H, Dueholm Morten, Bayley Hagan, Robinson Carol V, Hare Stephen, Matthews Stephen
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2017 | 起止号: | 2017 Aug 15; 8(1):263 |
| doi: | 10.1038/s41467-017-00361-6 | ||
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