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SDS-induced fibrillation of alpha-synuclein: an alternative fibrillation pathway.

机译:SDS诱导的α-突触核蛋白原纤化:另一种原纤化途径。

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A structural investigation of the sodium dodecyl sulfate (SDS)-induced fibrillation of alpha-synuclein (alphaSN), a 140-amino-acid protein implicated in Parkinson's disease, has been performed. Spectroscopic analysis has been combined with isothermal titration calorimetry, small-angle X-ray scattering, and transmission electron microscopy to elucidate a fibrillation pathway that is remarkably different from the fibrillation pathway in the absence of SDS. Fibrillation occurs most extensively and most rapidly (starting within 45 min) under conditions where 12 SDS molecules are bound per alphaSN molecule, which is also the range where SDS binding is associated with the highest enthalpy. Fibrillation is only reduced in proportion to the fraction of SDS below 25 mol% SDS in mixed surfactant mixtures with nonionic surfactants and is inhibited by formation of bulk micelles and induction of alpha-helical structure. In this fibrillogenic complex, 4 alphaSN molecules initially associate with 40-50 SDS molecules to form a shared micelle that gradually grows in size. The complex initially exhibits a mixture of random coil and alpha-helix, but incubation results in a structural conversion into beta-sheet structure and concomitant formation of thioflavin-T-binding fibrils over a period of several hours. Based on small-angle X-ray scattering, the aggregates elongate as a beads-on-a-string structure in which individual units of ellipsoidal SDS-alphaSN are bridged by strings of the protein, so that aggregates nucleate around the surface of protein-stabilized micelles. Thus, fibrillation in this case occurs by a process of continuous accretion rather than by the rate-limiting accumulation of a distinct nucleus. The morphology of the SDS-induced fibrils does not exhibit the classical rod-like structures formed by alphaSN when aggregated by agitation in the absence of SDS. The SDS-induced fibrils have a flexible worm-like appearance, which can be converted into classical straight fibrils by continuous agitation. SDS-induced fibrillation represents an alternative and highly reproducible mechanism for fibrillation where protein association is driven by the formation of shared micelles, which subsequently allows the formation of beta-sheet structures that presumably link individual micelles. This illustrates that protein fibrillation may occur by remarkably different mechanisms, testifying to the versatility of this process.
机译:对十二烷基硫酸钠(SDS)诱导的α-突触核蛋白(alphaSN)的原纤维颤动进行了结构研究,α-突触核蛋白是与帕金森氏病有关的140个氨基酸的蛋白质。光谱分析已与等温滴定量热法,小角度X射线散射和透射电子显微镜相结合,阐明了与没有SDS的原纤化途径明显不同的原纤化途径。在每个alphaSN分子结合12个SDS分子的条件下,纤维化发生最广泛,最迅速(在45分钟内开始),这也是SDS结合与最高焓相关的范围。在与非离子表面活性剂混合的表面活性剂混合物中,原纤化仅与SDS低于25 mol%SDS的比例成比例降低,并且通过形成大量胶束和诱导α-螺旋结构来抑制。在这种原纤维形成复合物中,最初有4个alphaSN分子与40-50个SDS分子缔合,形成一个共享的胶束,该胶束的尺寸逐渐增大。该复合物最初表现出无规卷曲和α-螺旋的混合物,但是温育导致在数小时的时间内结构转变成β-折叠结构并伴随形成硫黄素-T结合原纤维。基于小角度X射线散射,聚集体呈串珠状结构伸长,其中椭圆形SDS-alphaSN的各个单元被蛋白质串桥接,从而聚集体围绕蛋白质表面成核。稳定的胶束。因此,在这种情况下,原纤维形成是通过持续增生的过程而不是通过限制不同核的速率积累而发生的。当在不存在SDS的情况下通过搅动聚集时,SDS诱导的原纤维的形态学不会表现出由alphaSN形成的经典杆状结构。 SDS诱导的原纤维具有柔和的蠕虫状外观,可通过连续搅拌将其转变为经典的直原纤维。 SDS诱导的原纤维形成代表了一种可替代的且高度可重现的原纤维形成机制,其中蛋白质缔合由共享胶束的形成驱动,随后允许形成可能连接各个胶束的β-折叠结构。这说明蛋白原纤化可能通过明显不同的机制发生,证明了该过程的多功能性。

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