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Common and distinct mechanisms of activation of rhodopsin and other G protein-coupled receptors.


ABSTRACT: Detailed and systematic examination of high-resolution structural data is a rational strategy for understanding the function of biological macromolecules. G protein-coupled receptors (GPCRs) are an exceptionally valuable superfamily of proteins for such analysis. The most intriguing question is how a variety of extracellular stimuli evoke structural changes in the intracellular surface of the receptors. The recent active-like crystal structures of GPCRs provide information for uncovering common and distinct mechanisms of light-induced and ligand-induced activation. Based on systematic structural alignment, we have analyzed 3 receptors (rhodopsin, ?2 adrenergic receptor, adenosine A2A receptor) and demonstrate that the extracellular movement of helix VI is significantly different between rhodopsin and the other 2 receptors, and that the extracellular side of helix III exhibits distinct features in the 3 receptors. These findings not only emphasize the specialization of rhodopsin as a photoreceptor but also provide insights into the mechanism leading to rearrangement of helix VI.

SUBMITTER: Nakamura S 

PROVIDER: S-EPMC3654499 | biostudies-literature | 2013

REPOSITORIES: biostudies-literature

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Common and distinct mechanisms of activation of rhodopsin and other G protein-coupled receptors.

Nakamura Sumire S   Itabashi Takeshi T   Ogawa Daisuke D   Okada Tetsuji T  

Scientific reports 20130101


Detailed and systematic examination of high-resolution structural data is a rational strategy for understanding the function of biological macromolecules. G protein-coupled receptors (GPCRs) are an exceptionally valuable superfamily of proteins for such analysis. The most intriguing question is how a variety of extracellular stimuli evoke structural changes in the intracellular surface of the receptors. The recent active-like crystal structures of GPCRs provide information for uncovering common  ...[more]

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