首页> 外文期刊>Acta crystallographica. Section F, Structural biology communications >Crystallization and X-ray diffraction analysis of SpaE, a basal pilus protein from the gut-adapted Lactobacillus rhamnosus GG
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Crystallization and X-ray diffraction analysis of SpaE, a basal pilus protein from the gut-adapted Lactobacillus rhamnosus GG

机译:空间的结晶和X射线衍射分析,肠道适应乳菌菌菌菌菌菌株GG的基础菌蛋白

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摘要

SpaE is the predicted basal pilin subunit in the sortase-dependent SpaFED pilus from the gut-adapted and commensal Lactobacillus rhamnosus GG. Thus far, structural characterization of the cell-wall-anchoring basal pilins has remained difficult and has been limited to only a few examples from pathogenic genera and species. To gain a further structural understanding of the molecular mechanisms that are involved in the anchoring and assembly of sortase-dependent pili in less harmful bacteria, L. rhamnosus GG SpaE for crystallization was produced by recombinant expression in Escherichia coli. Although several attempts to crystallize the SpaE protein were unsuccessful, trigonal crystals that diffracted to a resolution of 3.1 angstrom were eventually produced using PEG 3350 as a precipitant and high protein concentrations. Further optimization with a combination of additives led to the generation of SpaE crystals in an orthorhombic form that diffracted to a higher resolution of 1.5 angstrom. To expedite structure determination by SAD phasing, selenium-substituted (orthorhombic) SpaE crystals were grown and X-ray diffraction data were collected to 1.8 angstrom resolution.
机译:SPAE是从肠道适应和非乳酸乳杆菌GG的分组依赖性浸渍菌状物中预测的基底菌株亚基。到目前为止,细胞壁锚固基底叶兰的结构表征仍然困难,并且仅仅限于来自致病属和物种的少数实例。为了进一步了解涉及粘附的分子机制的结构理解,在较少有害的细菌中依赖于分子酶依赖性菌素的组装,通过在大肠杆菌中重组表达产生用于结晶的L.Rhamosus Gg Spae。尽管几次结晶SPAE蛋白的尝试是不成功的,但是使用PEG 3350作为沉淀剂和高蛋白浓度来产生衍射到3.1埃的分辨率的三角形晶体。添加剂组合的进一步优化导致正常形式的SPAE晶体产生,其衍射到较高的1.5埃的较高分辨率。为了通过悲伤阶段加速结构测定,生长硒 - 取代的(正交)SPAE晶体,并将X射线衍射数据收集至1.8埃分辨率。

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