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首页> 外文期刊>Journal of Molecular Biology >Crystal structures and electron micrographs of fungal volvatoxin A2.
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Crystal structures and electron micrographs of fungal volvatoxin A2.

机译:真菌原毒素A2的晶体结构和电子显微照片。

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摘要

Membrane adhesion and insertion of protein are essential to all organisms, but the underlying mechanisms remain largely unknown. Membrane pore-forming toxins (PFTs) are potential model systems for studying these mechanisms. We have determined the crystal structures of volvatoxin A2 (VVA2), a fungal PFT from Volvariella volvacea, using Br-multiple-wavelength anomalous diffraction (MAD). The VVA2 structures obtained at pH 4.6, pH 5.5 and pH 6.5 were refined to resolutions of 1.42A, 2.6A and 3.2A, respectively. The structures reveal that the VVA2 monomer contains a single alpha/beta domain. Most of the VVA2 surface is occupied by its oligomerization motif and two putative heparin-binding motifs. Residues Ala91 to Ala101 display several conformations at different pH values, which might be under the control of His87. We also found that the shape of one putative heparin-binding motif in VVA2 appears similar to those found in fibroblast growth factors, and the other one displays a linear polypeptide. Our results suggest several possible intermediates of protein assembly in solution and protein adhering to cell membranes before conformational changes. The electron micrographs of VVA2 molecules in solution, at a protein concentration of 1microgml(-1), show that they can assemble into filament-like or braid-like oligomers in a pH-dependent way. In addition, the arc-shaped VVA2 structure obtained at pH 6.5 suggests that VVA2 could form a two-layered helical oligomer with 18 subunits per turn. The structures presented here could be used to elucidate the pore-formation mechanisms of VVA2 and its structural neighbors, Cyt toxins from Bacillus thuringiensis.
机译:膜的粘附和蛋白质的插入对于所有生物都是必不可少的,但是其基本机制仍是未知的。膜孔形成毒素(PFTs)是研究这些机制的潜在模型系统。我们已经使用Br-多波长异常衍射(MAD)确定了伏拉氏菌菌丝的真菌毒素Pvolvatoxin A2(VVA2)的晶体结构。将在pH 4.6,pH 5.5和pH 6.5下获得的VVA2结构分别精制到1.42A,2.6A和3.2A的分辨率。结构表明,VVA2单体包含单个alpha / beta域。 VVA2的大部分表面都被其低聚基序和两个假定的肝素结合基序占据。残基Ala91至Ala101在不同pH值下显示几种构象,这可能在His87的控制下。我们还发现,在VVA2中一个推定的肝素结合基序的形状看起来与在成纤维细胞生长因子中发现的相似,而另一个则显示出线性多肽。我们的结果表明,在构象变化之前,溶液中蛋白质组装的几种可能的中间产物以及蛋白质粘附在细胞膜上。溶液中VVA2分子的电子显微图,蛋白质浓度为1microgml(-1),表明它们可以以pH依赖的方式组装成丝状或辫状的低聚物。另外,在pH 6.5下获得的弧形VVA2结构表明VVA2可以形成每匝具有18个亚基的两层螺旋低聚物。这里介绍的结构可用于阐明VVA2及其结构邻居(苏云金芽孢杆菌的Cyt毒素)的成孔机理。

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