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Conformation of receptor-bound visual arrestin.


ABSTRACT: Arrestin-1 (visual arrestin) binds to light-activated phosphorylated rhodopsin (P-Rh*) to terminate G-protein signaling. To map conformational changes upon binding to the receptor, pairs of spin labels were introduced in arrestin-1 and double electron-electron resonance was used to monitor interspin distance changes upon P-Rh* binding. The results indicate that the relative position of the N and C domains remains largely unchanged, contrary to expectations of a "clam-shell" model. A loop implicated in P-Rh* binding that connects ?-strands V and VI (the "finger loop," residues 67-79) moves toward the expected location of P-Rh* in the complex, but does not assume a fully extended conformation. A striking and unexpected movement of a loop containing residue 139 away from the adjacent finger loop is observed, which appears to facilitate P-Rh* binding. This change is accompanied by smaller movements of distal loops containing residues 157 and 344 at the tips of the N and C domains, which correspond to "plastic" regions of arrestin-1 that have distinct conformations in monomers of the crystal tetramer. Remarkably, the loops containing residues 139, 157, and 344 appear to have high flexibility in both free arrestin-1 and the P-Rh*complex.

SUBMITTER: Kim M 

PROVIDER: S-EPMC3494953 | biostudies-literature | 2012 Nov

REPOSITORIES: biostudies-literature

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Conformation of receptor-bound visual arrestin.

Kim Miyeon M   Vishnivetskiy Sergey A SA   Van Eps Ned N   Alexander Nathan S NS   Cleghorn Whitney M WM   Zhan Xuanzhi X   Hanson Susan M SM   Morizumi Takefumi T   Ernst Oliver P OP   Meiler Jens J   Gurevich Vsevolod V VV   Hubbell Wayne L WL  

Proceedings of the National Academy of Sciences of the United States of America 20121022 45


Arrestin-1 (visual arrestin) binds to light-activated phosphorylated rhodopsin (P-Rh*) to terminate G-protein signaling. To map conformational changes upon binding to the receptor, pairs of spin labels were introduced in arrestin-1 and double electron-electron resonance was used to monitor interspin distance changes upon P-Rh* binding. The results indicate that the relative position of the N and C domains remains largely unchanged, contrary to expectations of a "clam-shell" model. A loop implica  ...[more]

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