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jansteinkuehler authored Dec 31, 2023
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Hello, I'm a researcher in the field of electrical and information engineering, biophysics, soft matter and synthetic biology. From spring 2023 I will combine and apply my reserach in the field of bio-inspired computation at the University of Kiel, with the [CRC 1461](https://www.crc1461-neurotronics.de/en).
Hello, I'm a researcher in the field of electrical and information engineering, biophysics, soft matter and synthetic biology. Since spring 2023 I lead the [bio-inspired computation lab](https://www.bioinsp.tf.uni-kiel.de/en) at Kiel University.

I obtained my PhD in the [Dimova Lab](http://www.dimova.de). I did my first postdoc with [Reinhard Lipowsky](http://www.mpikg.mpg.de/th), and a second postdoc with [Neha Kamat](https://www.nehakamat.com/). I mostly work experimentally and use software tools to analyze and understand data acquired in the lab. Recently I have developed some interest in using computer simulations. Over time I will upload more tools and scripts I have used.

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[Full publication list at Google Scholar](https://scholar.google.de/citations?user=2Dzpoo0AAAAJ), [e-mail](mailto:[email protected]) and twitter [@ja_steinkuehler](https://twitter.com/ja_steinkuehler).

### First author publications ###
1. PEO-b-PBD Diblock Copolymers Induce Packing Defects in Lipid/Hybrid Membranes and Improve Insertion Rates of Natively Folded Peptides, Steinkühler, J., Jacobs, M. L., Boyd, M. A., Villaseñor, C. G., Loverde, S. M., & Kamat, N. P. _Biomacromolecules_ 23, 4756−4765 (2022) [Full Text](https://jansteinkuehler.github.io/acs.biomac.2c00936.pdf)
1. Improving Cell-Free Expression of Model Membrane Proteins by Tuning Ribosome Cotranslational Membrane Association and Nascent Chain Aggregation, Steinkühler, J., Peruzzi, J. A., Krüger, A., Villaseñor, C. G., Jacobs, M. L., Jewett, M. C., & Kamat, N. P. ACS Synthetic Biology (2023) [Full Text](https://jansteinkuehler.github.io/acssynbio.3c00357.pdf)
3. PEO-b-PBD Diblock Copolymers Induce Packing Defects in Lipid/Hybrid Membranes and Improve Insertion Rates of Natively Folded Peptides, Steinkühler, J., Jacobs, M. L., Boyd, M. A., Villaseñor, C. G., Loverde, S. M., & Kamat, N. P. _Biomacromolecules_ 23, 4756−4765 (2022) [Full Text](https://jansteinkuehler.github.io/acs.biomac.2c00936.pdf)
1. Superelasticity of Plasma-and Synthetic Membranes Resulting from Coupling of Membrane Asymmetry, Curvature, and Lipid Sorting, Steinkühler, J., Fonda, P., Bhatia, T., Zhao, Z., Leomil, F. S., Lipowsky, R., & Dimova, R. _Advanced Science_, 2102109 (2021) [Full Text](http://onlinelibrary.wiley.com/doi/full/10.1002/advs.202102109)
2. Energy Dissipation at Interfaces Drives Multicompartment Remodeling, J. Steinkühler, N.H. Kamat (2020) _Chem_ [Full Text](j.chempr.2020.04.010.pdf)
3. Controlled division of cell-sized vesicles by low densities of membrane-bound proteins, J. Steinkühler, R.L. Knorr, Z. Zhao, T. Bhatia, S.M. Bartelt, S. Wegner, R. Dimova and R. Lipowsky, _Nature Communications_, 11(1), 1-11 (2020) [Full Text](https://www.nature.com/articles/s41467-020-14696-0) [Press release](http://www.mpikg.mpg.de/6260641/news_publication_14488959_transferred?c=132305)
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