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首页> 外文期刊>Journal of Extracellular Vesicles >An intact membrane is essential for small extracellular vesicle‐induced modulation of α‐synuclein fibrillization
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An intact membrane is essential for small extracellular vesicle‐induced modulation of α‐synuclein fibrillization

机译:完整的膜对于小细胞外囊泡诱导的α-突触核蛋白原纤维化调节至关重要

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The misfolding and fibrillization of the protein, α‐synuclein (αsyn), is associated with neurodegenerative disorders referred to as the synucleinopathies. Understanding the mechanisms of αsyn misfolding is an important area of interest given that αsyn misfolding contributes to disease pathogenesis. While many studies report the ability of synthetic lipid membranes to modulate αsyn folding, there is little data pertaining to the mechanism(s) of this interaction. αSyn has previously been shown to associate with small lipid vesicles released by cells called extracellular vesicles (EVs) and it is postulated these interactions may assist in the spreading of pathological forms of this protein. Together, this presents the need for robust characterisation studies on αsyn fibrillization using biologically‐derived vesicles. In this study, we comprehensively characterised the ability of lipid‐rich small extracellular vesicles (sEVs) to alter the misfolding of αsyn induced using the Protein Misfolding Cyclic Amplification (PMCA) assay. The biochemical and biophysical properties of misfolded αsyn were examined using a range of techniques including: Thioflavin T fluorescence, transmission electron microscopy, analytical centrifugation and western immunoblot coupled with protease resistance assays and soluble/insoluble fractionation. We show that sEVs cause an acceleration in αsyn fibrillization and provide comprehensive evidence that this results in an increase in the abundance of mature insoluble fibrillar species. In order to elucidate the relevance of the lipid membrane to this interaction, sEV lipid membranes were modified by treatment with methanol, or a combination of methanol and sarkosyl. These treatments altered the ultrastructure of the sEVs without changing the protein cargo. Critically, these modified sEVs had a reduced ability to influence αsyn fibrillization compared to untreated counterparts. This study reports the first comprehensive examination of αsyn:EV interactions and demonstrates that sEVs are powerful modulators of αsyn fibrillization, which is mediated by the sEV membrane. In doing so, this work provides strong evidence for a role of sEVs in contributing directly to αsyn misfolding in the synucleinopathy disorders.
机译:蛋白质α-突触核蛋白(αsyn)的错误折叠和原纤化与称为突触核苷酸蛋白化的神经变性障碍有关。了解αsyn错误折叠的机制是一个重要的兴趣领域,因为αyyn错误折叠有助于疾病发病机制。虽然许多研究报告了合成脂膜调节αsyn折叠的能力,但几乎没有与该相互作用的机制有关的数据。先前已被证明αSyn与称为细胞外囊泡(EVS)释放的小脂质囊泡相关联,并且假设这些相互作用可以有助于这种蛋白质的病理形式的扩散。其中,这提出了使用生物学衍生的囊泡对αsyn纤维化的鲁棒特征研究的需要。在这项研究中,我们综合地表征了富含脂质的小细胞外囊泡(SEV)来改变使用蛋白质错误折叠循环扩增(PMCA)测定诱导αsyn的错误折叠的能力。使用一系列技术检查误折叠αSyn的生物化学和生物物理性质,包括:硫蛋白T荧光,透射电子显微镜,分析离心和西免疫印迹与蛋白酶抗性测定和可溶/不溶性分馏偶联。我们表明,SEVS导致αSyn纤维化的加速度,并提供全面的证据,这导致成熟不溶性纤维状物种的丰富增加。为了阐明脂质膜与该相互作用的相关性,通过用甲醇处理或甲醇和甲藓基的组合来改变SeP脂膜。这些治疗改变了SED的超微结构而不改变蛋白质货物。批判性地,与未处理的对应物相比,这些改性的SED具有降低的影响αSyn纤维化的能力。本研究报告了对αsyn的第一次全面检查:EV相互作用,并证明了SED是αSyn原纤化的强大调节剂,其由SEV膜介导。在这样做时,这项工作为SEVS的作用提供了强有力的证据,即直接促进孕核病症障碍中的αsyn错误。

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