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真菌朊病毒 HET-s(218-289)的降解诱导形成通用的淀粉样纤维折叠。

Degradation of fungal prion HET-s(218-289) induces formation of a generic amyloid fold.

机构信息

Department of Biological Sciences and Center for Structural Biology, Vanderbilt University, Nashville, Tennessee, USA.

出版信息

Biophys J. 2012 May 16;102(10):2339-44. doi: 10.1016/j.bpj.2012.04.011. Epub 2012 May 15.

Abstract

The prion-forming domain of the fungal prion protein HET-s, HET-s(218-289), is known from solid-state NMR studies to have a β-solenoidal structure; the β-solenoid has the cross-β structure characteristic of all amyloids, but is inherently more complex than the generic stacked β-sheets found in studies of small synthetic peptides. At low pH HET-s(218-289) has also been reported to form an alternative structure, which has not been characterized. We have confirmed by x-ray fiber diffraction that HET-s(218-289) adopts a β-solenoidal structure at neutral pH, and shown that at low pH, it forms either a β-solenoid or a stacked β-sheet structure, depending on the integrity of the protein and the conditions of fibrillization. The low pH stacked-sheet structure is usually formed only by proteolyzed HET-s(218-289), but intact HET-s(218-289) can form stacked sheets when seeded with proteolyzed stacked-sheet HET-s(218-289). The polymorphism of HET-s parallels the structural differences between the infectious brain-derived and the much less infectious recombinant mammalian prion protein PrP. Taken together, these observations suggest that the functional or pathological forms of amyloid proteins are more complex than the simple generic stacked-sheet amyloids commonly formed by short peptides.

摘要

真菌朊病毒蛋白 HET-s 的朊病毒形成结构域(HET-s(218-289))已通过固态 NMR 研究得知具有β-螺旋结构;β-螺旋具有所有淀粉样蛋白的交叉β结构特征,但与在研究小合成肽时发现的通用堆叠β-折叠相比,它本质上更为复杂。在低 pH 值下,还报道了 HET-s(218-289)形成替代结构,但尚未对其进行表征。我们通过 X 射线纤维衍射证实了 HET-s(218-289)在中性 pH 值下采用β-螺旋结构,并表明在低 pH 值下,它形成β-螺旋或堆叠β-折叠结构,这取决于蛋白质的完整性和纤维形成的条件。低 pH 值堆叠β-折叠结构通常仅由蛋白水解的 HET-s(218-289)形成,但完整的 HET-s(218-289)可以在与蛋白水解的堆叠β-折叠 HET-s(218-289)种子形成堆叠β-折叠结构。HET-s 的多态性与感染性脑衍生和传染性低得多的重组哺乳动物朊病毒蛋白 PrP 之间的结构差异相平行。这些观察结果表明,淀粉样蛋白的功能或病理形式比通常由短肽形成的简单通用堆叠β-折叠淀粉样蛋白更为复杂。

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