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载脂蛋白A-I淀粉样生成片段中的构象转换与纤维形成

Conformational switching and fibrillogenesis in the amyloidogenic fragment of apolipoprotein a-I.

作者信息

Andreola Alessia, Bellotti Vittorio, Giorgetti Sofia, Mangione Palma, Obici Laura, Stoppini Monica, Torres Jaume, Monzani Enrico, Merlini Giampaolo, Sunde Margaret

机构信息

Department of Biochemistry and Centro Interdipartimentale di Biologia Applicata, University of Pavia, Via Taramelli 3b, Italy.

出版信息

J Biol Chem. 2003 Jan 24;278(4):2444-51. doi: 10.1074/jbc.M204801200. Epub 2002 Nov 5.

Abstract

The N-terminal portion of apolipoprotein A-I corresponding to the first 93 residues has been identified as the main component of apolipoprotein A-I fibrils in a form of systemic amyloidosis. We have been able to characterize the process of conformational switching and fibrillogenesis in this fragment of apolipoprotein A-I purified directly from ex vivo amyloid material. The peptide exists in an unstructured form in aqueous solution at neutral pH. The acidification of the solution provokes a collapse into a more compact, intermediate state and the transient appearance of a helical conformation that rapidly converts to a stable, mainly beta-structure in the fibrils. The transition from helical to sheet structure occurs concomitantly with peptide self-aggregation, and fibrils are detected after 72 h. The alpha-helical conformation is induced by the addition of trifluoroethanol and phospholipids. Interaction of the amyloidogenic polypeptide with phospholipids prevents the switching from helical to beta-sheet form and inhibits fibril formation. The secondary structure propensity of the apolipoprotein A-I fragment appears poised between helix and the beta-sheet. These findings reinforce the idea of a delicate balance between natively stabilizing interactions and fatally stabilizing interactions and stress the importance of cellular localization and environment in the maintenance of protein conformation.

摘要

载脂蛋白A-I的N端部分(对应于前93个残基)已被确定为系统性淀粉样变性形式下载脂蛋白A-I原纤维的主要成分。我们已经能够表征直接从离体淀粉样物质中纯化的载脂蛋白A-I这一片段的构象转换和纤维形成过程。该肽在中性pH的水溶液中以无结构形式存在。溶液酸化会促使其折叠成更紧密的中间状态,并短暂出现螺旋构象,该构象会迅速转变为纤维中稳定的、主要为β结构。从螺旋结构到片层结构的转变与肽的自我聚集同时发生,72小时后可检测到纤维。通过添加三氟乙醇和磷脂可诱导α螺旋构象。淀粉样生成多肽与磷脂的相互作用可防止从螺旋形式转变为β片层形式,并抑制纤维形成。载脂蛋白A-I片段的二级结构倾向似乎处于螺旋和β片层之间。这些发现强化了天然稳定相互作用和致命稳定相互作用之间微妙平衡的观点,并强调了细胞定位和环境在维持蛋白质构象中的重要性。

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