Extracellular matrix-specific platelet activation leads to a differential translational response and protein de novo synthesis in human platelets
- Platelets are exposed to extracellular matrix (ECM) proteins like collagen and laminin and to fibrinogen during acute vascular events. However, beyond hemostasis, platelets have the important capacity to migrate on ECM surfaces, but the translational response of platelets to different extracellular matrix stimuli is still not fully characterized. Using 2D-gel electrophoresis, confocal microscopy, polysome analysis and protein sequencing by mass spectrometry, we demonstrate that platelets show a differential expression profile of newly synthesized proteins on laminin, collagen or fibrinogen. In this context, we observed a characteristic, ECM-dependent translocation phenotype of translation initiation factor eIF4E to the ribosomal site. eIF4E accumulated in polysomes with increased binding of mRNA and co-localization with vinculin, leading to de novo synthesis of important cytoskeletal regulator proteins. As the first study, we included a proteome analysis of laminin-adherent plateletsPlatelets are exposed to extracellular matrix (ECM) proteins like collagen and laminin and to fibrinogen during acute vascular events. However, beyond hemostasis, platelets have the important capacity to migrate on ECM surfaces, but the translational response of platelets to different extracellular matrix stimuli is still not fully characterized. Using 2D-gel electrophoresis, confocal microscopy, polysome analysis and protein sequencing by mass spectrometry, we demonstrate that platelets show a differential expression profile of newly synthesized proteins on laminin, collagen or fibrinogen. In this context, we observed a characteristic, ECM-dependent translocation phenotype of translation initiation factor eIF4E to the ribosomal site. eIF4E accumulated in polysomes with increased binding of mRNA and co-localization with vinculin, leading to de novo synthesis of important cytoskeletal regulator proteins. As the first study, we included a proteome analysis of laminin-adherent platelets and interestingly identified upregulation of essentially important proteins that mediate cytoskeletal regulation and mobility in platelets, such as filamin A, talin, vinculin, gelsolin, coronin or kindlin-3. In summary, we demonstrate that platelet activation with extracellular matrix proteins results in a distinct stimulus-specific translational response of platelets that will help to improve our understanding of the regulation of platelet mobility and migration.…


| Author: | Bjoern F. Kraemer, Marc Geimer, Mirita Franz-Wachtel, Tobias Lamkemeyer, Hanna MannellGND, Stephan Lindemann |
|---|---|
| URN: | urn:nbn:de:bvb:384-opus4-1080174 |
| Frontdoor URL | https://opus.bibliothek.uni-augsburg.de/opus4/108017 |
| ISSN: | 1422-0067OPAC |
| Parent Title (English): | International Journal of Molecular Sciences |
| Publisher: | MDPI |
| Place of publication: | Basel |
| Type: | Article |
| Language: | English |
| Year of first Publication: | 2020 |
| Publishing Institution: | Universität Augsburg |
| Release Date: | 2023/09/25 |
| Tag: | Catalysis; Computer Science Applications; General Medicine; Inorganic Chemistry; Molecular Biology; Organic Chemistry; Physical and Theoretical Chemistry; Spectroscopy |
| Volume: | 21 |
| Issue: | 21 |
| First Page: | 8155 |
| DOI: | https://doi.org/10.3390/ijms21218155 |
| Institutes: | Medizinische Fakultät |
| Medizinische Fakultät / Lehrstuhl für Physiologie | |
| Dewey Decimal Classification: | 6 Technik, Medizin, angewandte Wissenschaften / 61 Medizin und Gesundheit / 610 Medizin und Gesundheit |
| Licence (German): | CC-BY 4.0: Creative Commons: Namensnennung |



