Man Wing K, De Simone Alfonso, Barritt Joseph D, Vendruscolo Michele, Dobson Christopher M, Fusco Giuliana
Department of Chemistry, Centre for Misfolding Diseases, University of Cambridge, Cambridge, United Kingdom.
Department of Life Sciences, Imperial College London, London, United Kingdom.
Front Neurosci. 2020 Jan 29;14:18. doi: 10.3389/fnins.2020.00018. eCollection 2020.
α-Synuclein (αS) is a presynaptic protein whose aggregation is associated with Parkinson's disease (PD). Although the physiological function of αS is still unclear, several lines of evidence indicate that this protein may play a role in the trafficking of synaptic vesicles (SVs) during neurotransmitter release, a task associated with its ability to bind SVs and promote their clustering. It is therefore crucial to identify the cellular factors that modulate this process. To address this question, using nuclear magnetic resonance (NMR) spectroscopy we have characterized the role of cholesterol, a major component of the membrane of SVs, in the binding of αS with synaptic-like vesicles. Our results indicate that cholesterol can act as a modulator of the overall affinity of αS for SVs by reducing the local affinity of the region spanning residues 65-97 in the non-amyloid-β component (NAC) of the protein. The increased population of bound states that expose the region 65-97 to the solvent was found to induce stronger vesicle-vesicle interactions by αS. These results provide evidence that cholesterol modulates the clustering of synaptic vesicles induced by (α)S, and supports the role of the disorder-to-order equilibrium of the NAC region in the modulation of the biological properties of the membrane-bound state of αS.
α-突触核蛋白(αS)是一种突触前蛋白,其聚集与帕金森病(PD)相关。尽管αS的生理功能仍不清楚,但有几条证据表明,这种蛋白质可能在神经递质释放过程中参与突触小泡(SVs)的运输,这一任务与其结合SVs并促进其聚集的能力有关。因此,确定调节这一过程的细胞因子至关重要。为了解决这个问题,我们利用核磁共振(NMR)光谱法,研究了SVs膜的主要成分胆固醇在αS与类突触小泡结合中的作用。我们的结果表明,胆固醇可以通过降低蛋白质非淀粉样β成分(NAC)中65-97位残基区域的局部亲和力,来调节αS对SVs的整体亲和力。发现暴露65-97位区域于溶剂中的结合态数量增加,会导致αS诱导更强的小泡-小泡相互作用。这些结果证明胆固醇调节由(α)S诱导的突触小泡聚集,并支持NAC区域的无序到有序平衡在调节αS膜结合状态生物学特性中的作用。