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Unveiling transient protein-protein interactions that modulate inhibition of alpha-synuclein aggregation by beta-synuclein, a pre-synaptic protein that co-localizes with alpha-synuclein

机译:揭示调节β-突触核蛋白(一种与α-突触核蛋白共定位的突触前蛋白)对α-突触核蛋白聚集的抑制作用的瞬时蛋白质-蛋白质相互作用。

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Pathology in Parkinson’s disease is linked to self-association of α-Synuclein (αS) into pathogenic oligomeric species and highly ordered amyloid fibrils. Developing effective therapeutic strategies against this debilitating disease is critical and βS, a pre-synaptic protein that co-localizes with αS, can act as an inhibitor of αS assembly. Despite the potential importance of βS as an inhibitor of αS, the nature, location and specificity of the molecular interactions between these two proteins is unknown. Here we use NMR paramagnetic relaxation enhancement experiments, to demonstrate that βS interacts directly with αS in a transient dimer complex with high specificity and weak affinity. Inhibition of αS by βS arises from transient αS/βS heterodimer species that exist primarily in head- to- tail configurations while αS aggregation arises from a more heterogeneous and weaker range of transient interactions that include both head-to-head and head-to-tail configurations. Our results highlight that intrinsically disordered proteins can interact directly with one another at low affinity and that the transient interactions that drive inhibition versus aggregation are distinct by virtue of their plasticity and specificity.
机译:帕金森氏病的病理学与α-突触核蛋白(αS)自身结合成致病性寡聚物种和高度有序的淀粉样蛋白原纤维有关。开发针对这种令人衰弱的疾病的有效治疗策略至关重要,βS(一种与αS共定位的突触前蛋白)可以作为αS组装的抑制剂。尽管βS作为αS抑制剂的潜在重要性,但尚不清楚这两种蛋白质之间分子相互作用的性质,位置和特异性。在这里,我们使用NMR顺磁弛豫增强实验,来证明βS在高特异性和弱亲和力的瞬态二聚体复合物中直接与αS相互作用。 βS对αS的抑制作用源于主要以头对尾构型存在的瞬时αS/βS异二聚体物种,而αS聚集源于瞬态相互作用的更不均一性和较弱范围,包括头对头和头对头尾部配置。我们的结果表明,内在无序的蛋白可以低亲和力直接相互相互作用,而驱动抑制和聚集的瞬时相互作用则由于其可塑性和特异性而具有明显的区别。

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