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Purification crystallization and characterization of the Pseudomonas outer membrane protein FapF a functional amyloid transporter

机译:假单胞菌外膜蛋白FapF(一种功能性淀粉样蛋白转运蛋白)的纯化结晶和表征

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摘要

Bacteria often produce extracellular amyloid fibres via a multi-component secretion system. Aggregation-prone, unstructured subunits cross the periplasm and are secreted through the outer membrane, after which they self-assemble. Here, significant progress is presented towards solving the high-resolution crystal structure of the novel amyloid transporter FapF from Pseudomonas, which facilitates the secretion of the amyloid-forming polypeptide FapC across the bacterial outer membrane. This represents the first step towards obtaining structural insight into the products of the Pseudomonas fap operon. Initial attempts at crystallizing full-length and N-terminally truncated constructs by refolding techniques were not successful; however, after preparing FapF106–430 from the membrane fraction, reproducible crystals were obtained using the sitting-drop method of vapour diffusion. Diffraction data have been processed to 2.5 Å resolution. These crystals belonged to the monoclinic space group C121, with unit-cell parameters a = 143.4, b = 124.6, c = 80.4 Å, α = γ = 90, β = 96.32° and three monomers in the asymmetric unit. It was found that the switch to complete detergent exchange into C8E4 was crucial for forming well diffracting crystals, and it is suggested that this combined with limited proteolysis is a potentially useful protocol for membrane β-barrel protein crystallography. The three-dimensional structure of FapF will provide invaluable information on the mechanistic differences of biogenesis between the curli and Fap functional amyloid systems.
机译:细菌通常通过多组分分泌系统产生细胞外淀粉样蛋白纤维。易于聚集的非结构化亚基穿过周质并通过外膜分泌,然后它们自组装。在此,在解决来自假单胞菌的新型淀粉样蛋白转运蛋白FapF的高分辨率晶体结构方面取得了重大进展,这促进了形成淀粉样蛋白的多肽FapC跨细菌外膜的分泌。这代表着获得对假单胞菌操纵子产物的结构了解的第一步。通过重折叠技术结晶全长和N末端截短的构建体的最初尝试并不成功;然而,从膜级分制备FapF 106-430 后,可采用坐滴法气相扩散法获得可重现的晶体。衍射数据已处理至2.5Å分辨率。这些晶体属于单斜晶空间群C121,单位晶胞参数a = 143.4,b = 124.6,c = 80.4,α=γ= 90,β= 96.32°,并且三个单体位于不对称单元中。已发现,将清洁剂完全交换为C8E4的过程对于形成衍射良好的晶体至关重要,并且表明这种结合有限的蛋白水解作用对于膜β-桶状蛋白质晶体学可能是有用的方案。 FapF的三维结构将提供有关curli和Fap功能性淀粉样蛋白系统之间生物发生机制差异的宝贵信息。

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