| Literature DB >> 22550513 |
Leonhard Linta1, Marianne Stockmann, Tobias M Boeckers, Alexander Kleger, Stefan Liebau.
Abstract
α-synuclein is a protein involved in the pathogenesis of several so-called synucleinopathies including Parkinson's disease. A variety of models have been so far assessed. Human induced pluripotent stem cells provide a patient- and disease-specific model for in vitro studies, pharmacotoxicological screens, and hope for future cell-based therapies. Initial experimental procedures include the harvest of patients' material for the reprogramming process, the investigation of the patients genetic background in the cultured cells, and the evaluation of disease-relevant factors/proteins under various cell culture conditions.Entities:
Year: 2012 PMID: 22550513 PMCID: PMC3329650 DOI: 10.1155/2012/629230
Source DB: PubMed Journal: Stem Cells Int Impact factor: 5.443
Figure 1Production of iPS cell-derived neurons follows basic developmental steps. (a) Keratinocytes are reprogrammed into iPS cells by forced overexpression of the Yamanaka factors (OSKM). After differentiation into ectodermal cells neural stem cells can be isolated from the centers of the forming neural rosettes. These neural stem cells can be subsequently differentiated into neurons, (b) proliferating keratinocyte culture, (c) iPS cell colony in a feeder-free culture, (d) neural rosette shortly before dissection and isolation of neural stem cells, (e) adherent culture of neural stem cells, and (f) iPS cell-derived neurons after four weeks of culture.
Figure 2iPS cell-derived neurons express α-synuclein. (a) Immunofluorescence stainings of α-synuclein in TH (tyrosine hydroxylase) and TUBB3 (Tubulin beta-III) positive dopaminergic neurons after 5 months of differentiation show nuclear and vesicular localisation of α-synuclein, (b) and (c) RNA expression of α-synuclein (SNCA) and leucine-rich repeat kinase 2 (LRRK2) is upregulated in neurons compared to iPS cells and neural stem cells (NSCs) (normalized to the house-keeping gene HMBS), and (d) Subcellular fractionation of iPS cell-derived neurons shows nuclear (P1 fraction) and membrane associated, likely synaptic localization (P2 fraction) of α-synuclein.