AbstractSpecific helix–helix interactions between the single-span transmembrane domains of receptor tyrosine kinases are believed to be important for their lateral dimerization and signal transduction. Establishing structure–function relationships requires precise structural-dynamic information about this class of biologically significant bitopic membrane proteins. ErbB4 is a ubiquitously expressed member of the HER/ErbB family of growth factor receptor tyrosine kinases that is essential for the normal development of various adult and fetal human tissues and plays a role in the pathobiology of the organism. The dimerization of the ErbB4 transmembrane domain in membrane-mimicking lipid bicelles was investigated by solution NMR. In a bicellar...
Abstract2H NMR spectroscopy and freeze-fracture electron microscopy were used to compare the transme...
AbstractFolding of polytopic transmembrane proteins involves interactions of individual transmembran...
AbstractThe Eph receptor tyrosine kinases and their membrane-bound ephrin ligands control a diverse ...
AbstractSpecific helix–helix interactions between the single-span transmembrane domains of receptor ...
AbstractIn present work the interaction of two TM α-helices of the ErbB3 receptor tyrosine kinase fr...
AbstractThe transmembrane domains of ErbB receptor tyrosine kinases are monotopic helical structures...
AbstractGxxxG motifs are common in transmembrane domains of membrane proteins and are often introduc...
AbstractOne of the most extensively studied receptor tyrosine kinases is EGFR/ErbB1. Although our kn...
AbstractAssociation of transmembrane (TM) helices is facilitated by the close packing of small resid...
AbstractThe influence of lipid bilayer properties on a defined and sequence-specific transmembrane h...
AbstractIn present work the interaction of two TM α-helices of the ErbB3 receptor tyrosine kinase fr...
ErbBjHER proteins belong to receptor tyrosine kinase family and are involved in a complex interactio...
ErbBjHER proteins belong to receptor tyrosine kinase family and are involved in a complex interactio...
AbstractHere, we study the homodimerization of the transmembrane domain of Neu, as well as an oncoge...
AbstractThe transmembrane domains of ErbB receptor tyrosine kinases are monotopic helical structures...
Abstract2H NMR spectroscopy and freeze-fracture electron microscopy were used to compare the transme...
AbstractFolding of polytopic transmembrane proteins involves interactions of individual transmembran...
AbstractThe Eph receptor tyrosine kinases and their membrane-bound ephrin ligands control a diverse ...
AbstractSpecific helix–helix interactions between the single-span transmembrane domains of receptor ...
AbstractIn present work the interaction of two TM α-helices of the ErbB3 receptor tyrosine kinase fr...
AbstractThe transmembrane domains of ErbB receptor tyrosine kinases are monotopic helical structures...
AbstractGxxxG motifs are common in transmembrane domains of membrane proteins and are often introduc...
AbstractOne of the most extensively studied receptor tyrosine kinases is EGFR/ErbB1. Although our kn...
AbstractAssociation of transmembrane (TM) helices is facilitated by the close packing of small resid...
AbstractThe influence of lipid bilayer properties on a defined and sequence-specific transmembrane h...
AbstractIn present work the interaction of two TM α-helices of the ErbB3 receptor tyrosine kinase fr...
ErbBjHER proteins belong to receptor tyrosine kinase family and are involved in a complex interactio...
ErbBjHER proteins belong to receptor tyrosine kinase family and are involved in a complex interactio...
AbstractHere, we study the homodimerization of the transmembrane domain of Neu, as well as an oncoge...
AbstractThe transmembrane domains of ErbB receptor tyrosine kinases are monotopic helical structures...
Abstract2H NMR spectroscopy and freeze-fracture electron microscopy were used to compare the transme...
AbstractFolding of polytopic transmembrane proteins involves interactions of individual transmembran...
AbstractThe Eph receptor tyrosine kinases and their membrane-bound ephrin ligands control a diverse ...