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
Department of Life Sciences, Imperial College London, South Kensington Campus, London, SW72AZ, UK.
Chemistry Research Laboratory, University of Oxford, Oxford, OX1 3TA, UK.
Nat Commun. 2017 Aug 15;8(1):263. doi: 10.1038/s41467-017-00361-6.
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.
革兰氏阴性菌拥有专门的生物合成机制,有助于输出淀粉样亚基以构建生物膜基质。细菌功能性淀粉样蛋白的分泌需要一个定制的外膜蛋白通道,未折叠的淀粉样蛋白底物通过该通道转运。在这里,我们结合X射线晶体学、原生质谱、单通道电记录、分子模拟和圆二色性测量,以提供对来自假单胞菌的功能性淀粉样蛋白转运蛋白FapF的高分辨率结构洞察。FapF形成一个由门控β-桶通道组成的三聚体,其中通道的打开由一个螺旋塞调节,该螺旋塞连接到一个跨越细菌周质的延伸的卷曲螺旋平台。尽管FapF代表了一种独特类型的分泌系统,但它与多种肽转运系统具有共同的机制特征。我们的研究结果突出了处理和输出淀粉样蛋白序列的替代策略。革兰氏阴性菌从淀粉样纤维组装生物膜,这些纤维作为未折叠的淀粉样前体通过分泌系统跨外膜转运。在这里,作者描述了假单胞菌中淀粉样蛋白转运蛋白FapF的结构细节。