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The contribution of alpha synuclein to neuronal survival and function - Implications for Parkinson's disease

期刊

JOURNAL OF NEUROCHEMISTRY
卷 137, 期 3, 页码 331-359

出版社

WILEY
DOI: 10.1111/jnc.13570

关键词

alpha-synuclein; dopamine; Lewy body; Parkinson's disease; substantia nigra; synucleinopathy

资金

  1. Mercy Health Saint Mary's
  2. Parkinson's Disease Foundation
  3. Texas Tech University Health Sciences Center El Paso

向作者/读者索取更多资源

The aggregation of alpha synuclein (-syn) is a neuropathological feature that defines a spectrum of disorders collectively termed synucleinopathies, and of these, Parkinson's disease (PD) is arguably the best characterized. Aggregated -syn is the primary component of Lewy bodies, the defining pathological feature of PD, while mutations or multiplications in the -syn gene result in familial PD. The high correlation between -syn burden and PD has led to the hypothesis that -syn aggregation produces toxicity through a gain-of-function mechanism. However, -syn has been implicated to function in a diverse range of essential cellular processes such as the regulation of neurotransmission and response to cellular stress. As such, an alternative hypothesis with equal explanatory power is that the aggregation of -syn results in toxicity because of a toxic loss of necessary -syn function, following sequestration of functional forms -syn into insoluble protein aggregates. Within this review, we will provide an overview of the literature linking -syn to PD and the knowledge gained from current -syn-based animal models of PD. We will then interpret these data from the viewpoint of the -syn loss-of-function hypothesis and provide a potential mechanistic model by which loss of -syn function could result in at least some of the neurodegeneration observed in PD. By providing an alternative perspective on the etiopathogenesis of PD and synucleinopathies, this may reveal alternative avenues of research in order to identify potential novel therapeutic targets for disease modifying strategies.

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