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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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Finster, K. & Nielsen, N. I. W. (2021). Liv baseret på silicium i stedet for kulstof - en død sild. Aktuel Naturvidenskab, 5, 15-17.
Yang, Y., Wang, Z., Gan, C., Klausen, L. H., Bonné, R., Kong, G., Luo, D., Meert, M., Zhu, C., Sun, G., Guo, J., Ma, Y., Bjerg, J. T., Manca, J., Xu, M., Nielsen, L. P. & Dong, M. (2021). Long-distance electron transfer in a filamentous Gram-positive bacterium. Nature Communications, 12(1), Article 1709. https://doi.org/10.1038/s41467-021-21709-z
Nielsen, K. H. (2021). Lyst til salg. Weekendavisen, (Sektion 4 (Ideer)), 5.
Su, Y., Qiu, T., Song, W., Han, X., Sun, M., Wang, Z., Xie, H., Dong, MD. & Chen, M. (2021). Melt Electrospinning Writing of Magnetic Microrobots. Advanced Science, 8(3), Article 2003177. https://doi.org/10.1002/advs.202003177