Publications of Thomas Litschel
All genres
Journal Article (10)
1.
Journal Article
15 (1), 4986 (2024)
Membrane-induced 2D phase separation of the focal adhesion protein talin. Nature Communications 2.
Journal Article
4 (1), 1136 (2021)
Actin crosslinker competition and sorting drive emergent GUV size-dependent actin network architecture. Communications Biology 3.
Journal Article
17 (2), pp. 319 - 330 (2021)
Active shape oscillations of giant vesicles with cyclic closure and opening of membrane necks. Soft Matter 4.
Journal Article
12 (1), 2254 (2021)
Reconstitution of contractile actomyosin rings in vesicles. Nature Communications 5.
Journal Article
59 (48), pp. 21372 - 21376 (2020)
FtsZ Reorganization Facilitates Deformation of Giant Vesicles in Microfluidic Traps. Angewandte Chemie International Edition 6.
Journal Article
Actin crosslinker competition and sorting drive emergent GUV size-dependent actin network architecture. bioRxiv, 10.03.322354 (2020)
7.
Journal Article
9, e56110 (2020)
Phosphoinositides regulate force-independent interactions between talin, vinculin, and actin. eLife 8.
Journal Article
16, 1906259 (2020)
Shaping Giant Membrane Vesicles in 3D-Printed Protein Hydrogel Cages. Small 9.
Journal Article
57 (50), pp. 16286 - 16290 (2018)
Beating vesicles: Encapsulated protein oscillations cause dynamic membrane deformations. Angewandte Chemie International Edition 10.
Journal Article
20, 055008 (2018)
Freeze-thaw cycles induce content exchange between cell-sized lipid vesicles. New Journal of Physics Book Chapter (1)
11.
Book Chapter
Protein Reconstitution Inside Giant Unilamellar Vesicles. In: Annual Review of Biophysics, Vol 50, 2021, pp. 525 - 548 (2021)
Meeting Abstract (1)
12.
Meeting Abstract
50 (Suppl. 1), pp. 194 - 195. Springer, Berlin (2021)
Reconstitution of contractile actomyosin rings in vesicles. In European Biophysics Journal with Biophysics Letters, Thesis - PhD (1)
13.
Thesis - PhD
Bottom-up reconstitution using giant unilamellar vesicles as membrane compartments. Dissertation, Ludwig-Maximilians-Universität München, Fakultät für Physik, München (2021)
Preprint (1)
14.
Preprint
Microfluidic trapping of vesicles reveals membrane-tension dependent FtsZ cytoskeletal re-organisation. bioRxiv, 791459 (2019)