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Titlebook: Rhodopsin; Methods and Protocol Beata Jastrzebska Book 2015 Springer Science+Business Media New York 2015 G-Protein Coupled Receptor.age-re

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Functional Stability of Rhodopsin in a Bicelle System: Evaluating G Protein Activation by Rhodopsin ransduction cascade upon interaction with its heterotrimeric G protein, transducin (Gt), after light activation. Like all transmembrane proteins, rhodopsin is embedded within a phospholipid bilayer. Many studies have proposed that the membrane composition of this bilayer is an important factor for r
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Probing Conformational Changes in Rhodopsin Using Hydrogen-Deuterium Exchange Coupled to Mass Spectrre, we describe a complete methodology that can be used to assess conformational changes in rhodopsin accompanying its transition from the inactive to activated state upon light exposure. This approach may be employed to investigate the structure and conformational changes of various membrane protei
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Dynamic Single-Molecule Force Spectroscopy of Rhodopsin in Native Membranesstabilize membrane protein structure is critical to dissect the mechanism of action and dysfunction of these proteins. Single-molecule force spectroscopy (SMFS) and dynamic SMFS (DFS) are emerging nanotechniques that allow the study of membrane proteins under the physiologically relevant conditions
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