Publications
Synthetic Biology Approaches to Pattern Formation
Journal Article (5)
1.
Journal Article
130 (50), pp. 16471 - 16806 (2018)
Tanzende Vesikel: Proteinoszillationen führen zu periodischer Membranverformung. Angewandte Chemie 2.
Journal Article
57 (50), pp. 16286 - 16290 (2018)
Beating vesicles: Encapsulated protein oscillations cause dynamic membrane deformations. Angewandte Chemie International Edition 3.
Journal Article
9, 3942 (2018)
The MinDE system is a generic spatial cue for membrane protein distribution in vitro. Nature Communications 4.
Journal Article
2018 (137), e58139 (2018)
In Vitro Reconstitution of Self-Organizing Protein Patterns on Supported Lipid Bilayers. Journal of Visualized Experiments 5.
Journal Article
18 (1), pp. 288 - 296 (2018)
High-Speed Atomic Force Microscopy Reveals the Inner Workings of the MinDE Protein Oscillator. Nano Letters Meeting Abstract (1)
6.
Meeting Abstract
The MinDE system forms a propagating diffusion barrier that drives directed membrane protein transport. In 2018 ASCB|EMBO Meeting. 2018 ASCB|EMBO Meeting, San Diego, CA, USA, December 08, 2018 - December 12, 2018. (2018)
Poster (1)
7.
Poster
High-Speed AFM Correlation Spectroscopy (HS-AMF-CS): µS Protein Dynamics without Labels. 62nd Annual Meeting of the Biophysical-Society, San Francisco, CA, USA (2018)