Professur für Computational Biology

Staudtstraße 5
91058 Erlangen

Related Project(s)

(SFB1027: Physical modeling of non-equilibrium processes in biological systems (Saarland University)):
SFB1027: Cooperative Action of SNARE Peptides in Fusion
Prof. Dr. Rainer Böckmann
(01/01/2017 - 31/12/2020)

GRK 1962: Dynamische Wechselwirkungen an Biologischen Membranen – von Einzelmolekülen zum Gewebe
Prof. Dr. Rainer Böckmann
(01/04/2014 - 30/09/2018)

The role of SNARE TMDs during exocytosis of secretory granules
Prof. Dr. Rainer Böckmann
(01/06/2009 - 30/06/2012)

Publications (Download BibTeX)

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Böckmann, R., & Caflisch, A. (2005). Spontaneous formation of detergent micelles around the outer membrane protein OmpX. Biophysical Journal, 88(5), 3191-204.
Böckmann, R., & Grubmüller, H. (2004). Differential peptide dynamics is linked to major histocompatibility complex polymorphism. Journal of Biological Chemistry, 279(27), 28197-201.
Böckmann, R., & Grubmüller, H. (2004). Multistep binding of divalent cations to phospholipid bilayers: a molecular dynamics study. Angewandte Chemie-International Edition, 43(8), 1021-4.
Böckmann, R., & Grubmüller, H. (2003). Conformational dynamics of the F1-ATPase β-subunit: A molecular dynamics study. Biophysical Journal, 85(3), 1482-91.
Böckmann, R. (2003). Effect of sodium chloride on a lipid bilayer. Biophysical Journal, 85(3), 1647-55.
Böckmann, R., & Grubmüller, H. (2002). Nanoseconds molecular dynamics simulation of primary mechanical energy transfer steps in F1-ATP synthase. Nature Structural Biology, 9(3), 198-202.
Böckmann, R. (1999). πNN vertex function in a meson-theoretical model. Physical Review C, 60(5), 552121-552125.

Publications in addition (Download BibTeX)

Kirsch, S., Kugemann, A., Carpaneto, A., Böckmann, R., & Dietrich, P. (2018). Phosphatidylinositol-3,5-bisphosphate lipid-binding-induced activation of the human two-pore channel 2. Cellular and Molecular Life Sciences.
Ilyaskin, A., Kirsch, S., Böckmann, R., Sticht, H., Korbmacher, C., Härteis, S., & Diakov, A. (2018). The degenerin region of the human bile acid-sensitive ion channel (BASIC) is involved in channel inhibition by calcium and activation by bile acids. Pflugers Archiv : European journal of physiology.
Sun, L., & Böckmann, R. (2017). Membrane phase transition during heating and cooling: molecular insight into reversible melting. European biophysics journal : EBJ.

Last updated on 2019-24-04 at 10:26