Tenreiro Sandra, Franssens Vanessa, Winderickx Joris, Outeiro Tiago Fleming
CEDOC-Chronic Diseases Research Center, Faculdade de Ciências Médicas, Universidade Nova de Lisboa, Lisboa, Portugal.
Department of Biology, Functional Biology, KU Leuven, 3001 Heverlee, Belgium.
Curr Opin Genet Dev. 2017 Jun;44:74-83. doi: 10.1016/j.gde.2017.01.013.
The aging of the human population is resulting in an increase in the number of people afflicted by neurodegenerative disorders such as Parkinson's disease (PD), creating tremendous socio-economic challenges. This requires the urgent for the development of effective therapies, and of tools for early diagnosis of the disease. However, our understanding of the molecular mechanisms underlying PD pathogenesis is still incomplete, hampering progress in those areas. In recent years, the progression made in genetics has considerably contributed to our knowledge, by identifying several novel PD genes. Furthermore, many cellular and animal models have proven their value to decipher pathways involved in PD development. In this review we highlight the value of the yeast Saccharomyces cerevisiae as a model for PD. This unicellular eukaryote has contributed to our understanding of the cellular mechanisms targeted by most important PD genes and offers an excellent tool for discovering novel players via powerful and informative high throughput screens that accelerate further validation in more complex models.
人口老龄化导致患帕金森病(PD)等神经退行性疾病的人数增加,带来了巨大的社会经济挑战。这就迫切需要开发有效的治疗方法以及疾病早期诊断工具。然而,我们对PD发病机制的分子机制的理解仍不完整,阻碍了这些领域的进展。近年来,遗传学取得的进展通过鉴定几个新的PD基因,极大地增进了我们的认识。此外,许多细胞和动物模型已证明它们在解析PD发展所涉及途径方面的价值。在本综述中,我们强调酿酒酵母作为PD模型的价值。这种单细胞真核生物有助于我们理解最重要的PD基因所靶向的细胞机制,并通过强大且信息丰富的高通量筛选提供了一个发现新参与者的出色工具,从而加速在更复杂模型中的进一步验证。