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Molecular recycling within amyloid fibrils

机译:淀粉样蛋白原纤维内的分子回收

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Amyloid fibrils are thread-like protein aggregates with a core region formed from repetitive arrays of β -sheets oriented parallel to the fibril axis. Such structures were first recognized in clinical disorders, but more recently have also been linked to a variety of non-pathogenic phenomena ranging from the transfer of genetic information to synaptic changes associated with memory. The observation that many proteins can convert into similar structures in vitro has suggested that this ability is a generic feature of polypeptide chains. Here we have probed the nature of the amyloid structure by monitoring hydrogen/deuterium exchange in fibrils formed from an SH3 domain using a combination of nuclear magnetic resonance spectroscopy and electrospray ionization mass spectrometry. The results reveal that under the conditions used in this study, exchange is dominated by a mechanism of dissociation and re-association that results in the recycling of molecules within the fibril population. This insight into the dynamic nature of amyloid fibrils, and the ability to determine the parameters that define this behaviour, have important implications for the design of therapeutic strategies directed against amyloid disease.
机译:淀粉样蛋白原纤维是线状蛋白聚集体,其核心区域由平行于原纤维轴取向的β-折叠的重复阵列形成。这种结构首先在临床疾病中得到认可,但最近也与各种非致病现象相关,从遗传信息的转移到与记忆有关的突触变化。许多蛋白质可以在体外转化为相似结构的观察表明,这种能力是多肽链的一般特征。在这里,我们通过结合核磁共振波谱和电喷雾电离质谱法监测由SH3结构域形成的原纤维中的氢/氘交换,探索了淀粉样蛋白结构的性质。结果表明,在这项研究中使用的条件下,交换是由解离和重新缔合的机制主导的,该机制导致原纤维群体中分子的再循环。对淀粉样蛋白原纤维的动态性质的了解以及确定定义该行为的参数的能力,对设计针对淀粉样蛋白疾病的治疗策略具有重要意义。

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