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Recent research news on Artificial Biology


Distinct Network Morphologies from In Situ Polymerization of Microtubules in Giant Polymer-Lipid Hybrid Vesicles

Creating artificial cells with a dynamic cytoskeleton, akin to those in living cells, is a major goal in bottom-up synthetic biology. In this study, we demonstrate the in situ polymerization of microtubules encapsulated in giant polymer-lipid hybrid vesicles (GHVs) composed of 1,2-dioleoyl-sn-glycero-3-phosphocholine and an amphiphilic block copolymer. The block copolymer is comprised of poly(cholesteryl methacrylate-co-butyl methacrylate) as the hydrophobic block and either poly(6-O-methacryloyl-D-galactopyranose) or poly(carboxyethyl acrylate) as the hydrophilic extension. Depending on the concentrations of guanosine triphosphate (GTP) or its slowly hydrolyzable analog, guanosine-5′-[(α,β)-methyleno]triphosphate (GMPCPP), different microtubule morphologies are observed, including encapsulated microtubule networks, spike protrusions, as well as membrane-associated or aggregated microtubules. Overall, this work represents a step forward in mimicking the cellular cytoskeletons and uncovering the influence of membrane composition on microtubule morphologies.

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Ling, M., Santl-Temkiv, T., Finster, K. & Boesen, T. (2014). Molecular and physical characterization of bacterial ice nucleation proteins provide an insight into their biosignature potential.. Poster session presented at Joint Meeting of the Nordic Network of Astrobiology and the Centre of Geobiology, University of Bergen, Bergen, Norway.
Liu, L., Niu, L., Xu, M., Han, Q., Duan, H., Dong, MD., Besenbacher, F., Wang, C. & Yang, Y. (2014). Molecular Tethering Effect of C-Terminus of Amyloid Peptide Aβ42. A C S Nano, 8(9), 9503-9510. https://doi.org/10.1021/nn503737r
Nielsen, K. H., Nielsen, K. & Heymann, M. (2014). Molekylærmedicinens videnskabsteori og etik. Poster session presented at 1st Annual Meeting of the Danish Network in Philosophy of Science, Odense, Denmark.