Gerber Remo, Tahiri-Alaoui Abdessamad, Hore P J, James William
Department of Chemistry, University of Oxford, Physical and Theoretical Chemistry Laboratory, South Parks Road, Oxford OX1 3QZ, United Kingdom.
J Biol Chem. 2007 Mar 2;282(9):6300-7. doi: 10.1074/jbc.M608926200. Epub 2007 Jan 8.
The conformational transition of the human prion protein from an alpha-helical to a beta-sheet-rich structure is believed to be the critical event in prion pathogenesis. The molecular mechanism of misfolding and the role of intermediate states during this transition remain poorly understood. To overcome the obstacle of insolubility of amyloid fibrils, we have studied a beta-sheet-rich misfolded isoform of the prion protein, the beta-oligomer, which shares some structural properties with amyloid, including partial proteinase resistance. We demonstrate here that the beta-oligomer can be studied by solution-state NMR spectroscopy and obtain insights into the misfolding mechanism via its transient monomeric precursor. It is often assumed that misfolding into beta-sheet-rich isoforms proceeds via a compatible precursor with a beta-sheet subunit structure. We show here, on the contrary, evidence for an almost natively alpha-helix-rich monomeric precursor state with molten globule characteristics, converting in vitro into the beta-oligomer. We propose a possible mechanism for the formation of the beta-oligomer, triggered by intermolecular contacts between constantly rearranging structures. It is concluded that the beta-oligomer is not preceded by precursors with beta-sheet structure but by a partially unfolded clearly distinguishable alpha-helical state.
人们认为,人类朊病毒蛋白从α螺旋结构向富含β折叠结构的构象转变是朊病毒发病机制中的关键事件。在这一转变过程中,错误折叠的分子机制以及中间状态的作用仍知之甚少。为了克服淀粉样纤维不溶性的障碍,我们研究了朊病毒蛋白的一种富含β折叠的错误折叠异构体——β寡聚体,它与淀粉样物质具有一些结构特性,包括部分蛋白酶抗性。我们在此证明,β寡聚体可以通过溶液态核磁共振光谱进行研究,并通过其瞬时单体前体深入了解错误折叠机制。人们通常认为,错误折叠成富含β折叠的异构体是通过具有β折叠亚基结构的兼容前体进行的。相反,我们在此展示了一种几乎富含天然α螺旋的单体前体状态的证据,其具有熔球特征,在体外可转化为β寡聚体。我们提出了一种由不断重排的结构之间的分子间接触引发的β寡聚体形成的可能机制。得出的结论是,β寡聚体之前不是具有β折叠结构的前体,而是一种部分展开的、明显可区分的α螺旋状态。