| Literature DB >> 29156374 |
Sebastian Temme1, Daniela Friebe1, Timo Schmidt1, Gereon Poschmann2, Julia Hesse1, Bodo Steckel1, Kai Stühler2, Meik Kunz3, Thomas Dandekar3, Zhaoping Ding1, Payam Akhyari4, Artur Lichtenberg4, Jürgen Schrader5.
Abstract
Epicardium-derived cells (EPDC) and atrial stromal cells (ASC) display cardio-regenerative potential, but the molecular details are still unexplored. Signals which induce activation, migration and differentiation of these cells are largely unknown. Here we have isolated rat ventricular EPDC and rat/human ASC and performed genetic and proteomic profiling. EPDC and ASC expressed epicardial/mesenchymal markers (WT-1, Tbx18, CD73, CD90, CD44, CD105), cardiac markers (Gata4, Tbx5, troponin T) and also contained phosphocreatine. We used cell surface biotinylation to isolate plasma membrane proteins of rEPDC and hASC, Nano-liquid chromatography with subsequent mass spectrometry and bioinformatics analysis identified 396 rat and 239 human plasma membrane proteins with 149 overlapping proteins. Functional GO-term analysis revealed several significantly enriched categories related to extracellular matrix (ECM), cell migration/differentiation, immunology or angiogenesis. We identified receptors for ephrin and growth factors (IGF, PDGF, EGF, anthrax toxin) known to be involved in cardiac repair and regeneration. Functional category enrichment identified clusters around integrins, PI3K/Akt-signaling and various cardiomyopathies. Our study indicates that EPDC and ASC have a similar molecular phenotype related to cardiac healing/regeneration. The cell surface proteome repository will help to further unravel the molecular details of their cardio-regenerative potential and their role in cardiac diseases.Entities:
Keywords: Cell surface proteomics; Epicardium-derived cells; Human atrial stromal cells
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Year: 2017 PMID: 29156374 DOI: 10.1016/j.scr.2017.11.006
Source DB: PubMed Journal: Stem Cell Res ISSN: 1873-5061 Impact factor: 2.020