Nuclear localization and phosphorylation modulate pathological effects of alpha-synuclein

2019 | journal article; research paper

Jump to: Cite & Linked | Documents & Media | Details | Version history

Cite this publication

​Nuclear localization and phosphorylation modulate pathological effects of alpha-synuclein​
Pinho, R.; Paiva, I.; Jercic, K. G.; Fonseca-Ornelas, L.; Gerhardt, E.; Fahlbusch, C. & Garcia-Esparcia, P. et al.​ (2019) 
Human Molecular Genetics28(1) pp. 31​-50​.​ DOI: https://doi.org/10.1093/hmg/ddy326 

Documents & Media

License

GRO License GRO License

Details

Authors
Pinho, Raquel; Paiva, Isabel; Jercic, Kristina Gotovac; Fonseca-Ornelas, Luis; Gerhardt, Ellen; Fahlbusch, Christiane; Garcia-Esparcia, Paula; Kerimoglu, Cemil; Pavlou, Maria A. S.; Villar-Piqué, Anna; Szego, Éva; Lopes da Fonseca, Tomás; Odoardi, Francesca ; Soeroes, Szabolcs; Rego, Ana Cristina; Fischle, Wolfgang; Schwamborn, Jens C.; Meyer, Thomas; Kügler, Sebastian; Ferrer, Isidre; Attems, Johannes; Fischer, André ; Becker, Stefan; Zweckstetter, Markus; Borovecki, Fran; Outeiro, Tiago Fleming 
Abstract
Alpha-synuclein (aSyn) is a central player in Parkinson's disease (PD) but the precise molecular mechanisms underlying its pathogenicity remain unclear. It has recently been suggested that nuclear aSyn may modulate gene expression, possibly via interactions with DNA. However, the biological behavior of aSyn in the nucleus and the factors affecting its transcriptional role are not known. Here, we investigated the mechanisms underlying aSyn-mediated transcription deregulation by assessing its effects in the nucleus and the impact of phosphorylation in these dynamics. We found that aSyn induced severe transcriptional deregulation, including the downregulation of important cell cycle-related genes. Importantly, transcriptional deregulation was concomitant with reduced binding of aSyn to DNA. By forcing the nuclear presence of aSyn in the nucleus (aSyn-NLS), we found the accumulation of high molecular weight aSyn species altered gene expression and reduced toxicity when compared with the wild-type or exclusively cytosolic protein. Interestingly, nuclear localization of aSyn, and the effect on gene expression and cytotoxicity, was also modulated by phosphorylation on serine 129. Thus, we hypothesize that the role of aSyn on gene expression and, ultimately, toxicity, may be modulated by the phosphorylation status and nuclear presence of different aSyn species. Our findings shed new light onto the subcellular dynamics of aSyn and unveil an intricate interplay between subcellular location, phosphorylation and toxicity, opening novel avenues for the design of future strategies for therapeutic intervention in PD and other synucleinopathies.
Issue Date
2019
Journal
Human Molecular Genetics 
Project
SFB 1286: Quantitative Synaptologie 
SFB 1286 | B08: Definition von Kaskaden molekularer Veränderungen bei Synucleinopathien während der Neurodegeneration 
Working Group
RG A. Fischer (Epigenetics and Systems Medicine in Neurodegenerative Diseases) 
RG Outeiro (Experimental Neurodegeneration) 
ISSN
0964-6906
eISSN
1460-2083
Language
English

Reference

Citations


Social Media