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Nature Communications|August 9, 2012
Distinct loops in arrestin differentially regulate ligand binding within the GPCR opsinMartha E Sommer, Klaus Peter Hofmann, Martin Heck
The Journal of Biological Chemistry|December 21, 2010
Arrestin-rhodopsin binding stoichiometry in isolated rod outer segment membranes depends on the percentage of activated receptorsMartha E Sommer, Klaus Peter Hofmann, Martin Heck
Handbook of Experimental Pharmacology|December 3, 2013
Not just signal shutoff: the protective role of arrestin-1 in rod cellsMartha E Sommer, Klaus Peter Hofmann, Martin Heck
The Journal of Biological Chemistry|April 8, 2015
Formation and decay of the arrestin·rhodopsin complex in native disc membranesFlorent Beyrière, Martha E Sommer, Michal Szczepek, et al.
Biophysical Journal|September 5, 2014
Explicit spatiotemporal simulation of receptor-G protein coupling in rod cell disk membranesJohannes Schöneberg, Martin Heck, Klaus Peter Hofmann, et al.
Vision Research|November 13, 2003
Secondary binding sites of retinoids in opsin: characterization and role in regenerationMartin Heck, Sandra A Schädel, Dieter Maretzki, et al.
The Journal of Biological Chemistry|April 5, 2003
Signal transduction in the visual cascade involves specific lipid-protein interactionsElke Hessel, Martin Heck, Peter Müller, et al.
Methods in Enzymology|April 11, 2015
Structure-based biophysical analysis of the interaction of rhodopsin with G protein and arrestinMartha E Sommer, Matthias Elgeti, Peter W Hildebrand, et al.
The Journal of Biological Chemistry|July 19, 2006
Signal transfer from GPCRs to G proteins: role of the G alpha N-terminal region in rhodopsin-transducin couplingRolf Herrmann, Martin Heck, Peter Henklein, et al.
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