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Amyloid: morphology and toxicity.

机译:淀粉样蛋白:形态和毒性。

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摘要

We have expressed transthyretin (TTR) mutants which have significantly destabilised tetramers that aggregate into amyloid fibrils via a series of intermediates. We used atomic force microscopy to follow the morphology of aggregates during fibril formation. Initially, amorphous aggregates are formed that subsequently mature into fibrillar structures. This observation is interpreted as an optimisation of beta-strand registers. The rate of aggregation and maturation is highly temperature-dependent suggesting that entropic forces significantly contribute to stability. In addition, we identified a correlation between the presence of early formed aggregates of TTR and cytotoxicity. The toxic response was mediated via an apoptotic mechanism. The fact that early formed amorphous aggregates, but not more mature fibrils, exert a toxic response suggests that the rate of fibril formation may be a critical parameter. We propose that a slow rate of aggregation facilitates an increased concentration of a toxic intermediate.
机译:我们已经表达了转甲状腺素蛋白(TTR)突变体,该突变体具有明显不稳定的四聚体,这些四聚体通过一系列中间体聚集成淀粉样原纤维。我们使用原子力显微镜观察原纤维形成过程中聚集体的形态。最初形成无定形聚集体,随后成熟为纤维状结构。该观察结果被解释为β链寄存器的优化。聚集和成熟的速率高度依赖于温度,这表明熵力显着有助于稳定性。此外,我们确定了早期形成的TTR聚集体的存在与细胞毒性之间的相关性。毒性反应是通过凋亡机制介导的。早期形成的无定形聚集体而不是更成熟的原纤维产生毒性反应的事实表明,原纤维形成的速率可能是关键参数。我们建议缓慢的聚集速率有助于增加毒性中间体的浓度。

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