Serpell L C
Neurobiology Division, MRC Centre, Cambridge, UK.
Biochim Biophys Acta. 2000 Jul 26;1502(1):16-30. doi: 10.1016/s0925-4439(00)00029-6.
Structural studies of Alzheimer's amyloid fibrils have revealed information about the structure at different levels. The amyloid-beta peptide has been examined in various solvents and conditions and this has led to a model by which a conformational switching occurs from alpha-helix or random coil, to a beta-sheet structure. Amyloid fibril assembly proceeds by a nucleation dependent pathway leading to elongation of the fibrils. Along this pathway small oligomeric intermediates and short fibrillar structures (protofibrils) have been observed. In cross-section the fibril appears to be composed of several subfibrils or protofilaments. Each of these protofilaments is composed of beta-sheet structure in which hydrogen bonding occurs along the length of the fibre and the beta-strands run perpendicular to the fibre axis. This hierarchy of structure is discussed in this review.
阿尔茨海默病淀粉样纤维的结构研究揭示了不同层次结构的相关信息。淀粉样β肽已在各种溶剂和条件下进行了研究,这导致了一种模型,即从α螺旋或无规卷曲发生构象转换,形成β片层结构。淀粉样纤维组装通过成核依赖途径进行,导致纤维伸长。沿着这条途径,已观察到小的寡聚中间体和短的纤维状结构(原纤维)。在横截面上,纤维似乎由几个亚纤维或原丝组成。这些原丝中的每一个都由β片层结构组成,其中氢键沿着纤维长度发生,β链垂直于纤维轴排列。本文综述将讨论这种结构层次。