Research School of Chemistry, The Australian National University, Acton, ACT 2601, Australia.
Biomolecules. 2022 Jan 16;12(1):142. doi: 10.3390/biom12010142.
α-Synuclein (αS) is a small, unstructured, presynaptic protein expressed in the brain. Its aggregated form is a major component of Lewy bodies, the large proteinaceous deposits in Parkinson's disease. The closely related protein, β-Synuclein (βS), is co-expressed with αS. In vitro, βS acts as a molecular chaperone to inhibit αS aggregation. As a result of this assignation, βS has been largely understudied in comparison to αS. However, recent reports suggest that βS promotes neurotoxicity, implying that βS is involved in other cellular pathways with functions independent of αS. Here, we review the current literature pertaining to human βS in order to understand better the role of βS in homeostasis and pathology. Firstly, the structure of βS is discussed. Secondly, the ability of βS to (i) act as a molecular chaperone; (ii) regulate synaptic function, lipid binding, and the nigrostriatal dopaminergic system; (iii) mediate apoptosis; (iv) participate in protein degradation pathways; (v) modulate intracellular metal levels; and (vi) promote cellular toxicity and protein aggregation is explored. Thirdly, the P123H and V70M mutations of βS, which are associated with dementia with Lewy bodies, are discussed. Finally, the importance of post-translational modifications on the structure and function of βS is reviewed. Overall, it is concluded that βS has both synergistic and antagonistic interactions with αS, but it may also possess important cellular functions independent of αS.
α-突触核蛋白(αS)是一种小的、无结构的、突触前蛋白,在大脑中表达。其聚集形式是帕金森病中大量蛋白质沉积物路易体的主要成分。密切相关的蛋白质β-突触核蛋白(βS)与αS共同表达。在体外,βS 作为分子伴侣抑制αS 聚集。由于这种分配,βS 的研究程度远低于 αS。然而,最近的报告表明βS 促进神经毒性,这意味着βS 参与其他与αS 无关的细胞途径。在这里,我们回顾了有关人类βS 的当前文献,以便更好地了解βS 在稳态和病理学中的作用。首先,讨论了βS 的结构。其次,探讨了βS 的能力:(i)作为分子伴侣;(ii)调节突触功能、脂质结合和黑质纹状体多巴胺能系统;(iii)介导细胞凋亡;(iv)参与蛋白质降解途径;(v)调节细胞内金属水平;(vi)促进细胞毒性和蛋白质聚集。第三,讨论了与路易体痴呆相关的βS 的 P123H 和 V70M 突变。最后,综述了翻译后修饰对βS 结构和功能的重要性。总之,βS 与αS 既有协同作用,也有拮抗作用,但它也可能具有独立于αS 的重要细胞功能。