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Monomeric rhodopsin is the minimal functional unit required for arrestin binding.


ABSTRACT: We have tested whether arrestin binding requires the G-protein-coupled receptor be a dimer or a multimer. To do this, we encapsulated single-rhodopsin molecules into nanoscale phospholipid particles (so-called nanodiscs) and measured their ability to bind arrestin. Our data clearly show that both visual arrestin and beta-arrestin 1 can bind to monomeric rhodopsin and stabilize the active metarhodopsin II form. Interestingly, we find that the monomeric rhodopsin in nanodiscs has a higher affinity for wild-type arrestin binding than does oligomeric rhodopsin in liposomes or nanodiscs, as assessed by stabilization of metarhodopsin II. Together, these results establish that rhodopsin self-association is not required to enable arrestin binding.

SUBMITTER: Tsukamoto H 

PROVIDER: S-EPMC3848883 | biostudies-other | 2010 Jun

REPOSITORIES: biostudies-other

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Monomeric rhodopsin is the minimal functional unit required for arrestin binding.

Tsukamoto Hisao H   Sinha Abhinav A   DeWitt Mark M   Farrens David L DL  

Journal of molecular biology 20100422 3


We have tested whether arrestin binding requires the G-protein-coupled receptor be a dimer or a multimer. To do this, we encapsulated single-rhodopsin molecules into nanoscale phospholipid particles (so-called nanodiscs) and measured their ability to bind arrestin. Our data clearly show that both visual arrestin and beta-arrestin 1 can bind to monomeric rhodopsin and stabilize the active metarhodopsin II form. Interestingly, we find that the monomeric rhodopsin in nanodiscs has a higher affinity  ...[more]

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