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Biochimica Et Biophysica Acta|March 21, 2015
Functional competition within a membrane: Lipid recognition vs. transmembrane helix oligomerizationMichael Stangl, Dirk SchneiderBiophysical Journal|October 20, 2019
Lipid Binding Controls Dimerization of the Coat Protein p24 Transmembrane HelixStefanie Pannwitt, Michael Stangl, Dirk SchneiderPlos One|October 28, 2014
Sequence-specific dimerization of a transmembrane helix in amphipol A8-35Michael Stangl, Sebastian Unger, Sandro Keller, et al.Biophysical Journal|December 25, 2012
Detergent properties influence the stability of the glycophorin A transmembrane helix dimer in lysophosphatidylcholine micellesMichael Stangl, Anbazhagan Veerappan, Anja Kroeger, et al.Biochemistry|February 19, 2014
A minimal hydrophobicity is needed to employ amphiphilic p(HPMA)-co-p(LMA) random copolymers in membrane researchMichael Stangl, Mirjam Hemmelmann, Mareli Allmeroth, et al.FEBS Letters|November 6, 2004
Rendezvous in a membrane: close packing, hydrogen bonding, and the formation of transmembrane helix oligomersDirk SchneiderFrontiers in Plant Science|February 23, 2019
The Fusion Activity of IM30 Rings Involves Controlled Unmasking of the Fusogenic CoreAdrien Thurotte, Dirk SchneiderBiochimica Et Biophysica Acta|July 7, 2010
The membrane environment modulates self-association of the human GpA TM domain--implications for membrane protein folding and transmembrane signalingVeerappan Anbazhagan, Dirk SchneiderMembranes|August 6, 2021
Small Residues Inhibit Homo-Dimerization of the Human Carbonic Anhydrase XII Transmembrane DomainFlorian Cymer, Dirk SchneiderBiochimica Et Biophysica Acta. Biomembranes|December 5, 2016
In vivo selection of heterotypically interacting transmembrane helices: Complementary helix surfaces, rather than conserved interaction motifs, drive formation of transmembrane hetero-dimersDominik Steindorf, Dirk SchneiderPageof 16