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Monomeric rhodopsin is sufficient for normal rhodopsin kinase (GRK1) phosphorylation and arrestin-1 binding. | LitMetric

AI Article Synopsis

  • GPCR oligomerization is common but its functional roles, especially for class A GPCRs like rhodopsin, are not fully understood.
  • Rhodopsin can form both dimers and higher oligomers, but it has been shown that a single rhodopsin monomer can activate the G protein transducin.
  • This study reveals that a monomeric form of active rhodopsin is effectively phosphorylated by rhodopsin kinase (GRK1) and binds to arrestin-1 with high affinity, indicating that a monomeric state is sufficient for these critical interactions in the signaling process.

Article Abstract

G-protein-coupled receptor (GPCR) oligomerization has been observed in a wide variety of experimental contexts, but the functional significance of this phenomenon at different stages of the life cycle of class A GPCRs remains to be elucidated. Rhodopsin (Rh), a prototypical class A GPCR of visual transduction, is also capable of forming dimers and higher order oligomers. The recent demonstration that Rh monomer is sufficient to activate its cognate G protein, transducin, prompted us to test whether the same monomeric state is sufficient for rhodopsin phosphorylation and arrestin-1 binding. Here we show that monomeric active rhodopsin is phosphorylated by rhodopsin kinase (GRK1) as efficiently as rhodopsin in the native disc membrane. Monomeric phosphorylated light-activated Rh (P-Rh*) in nanodiscs binds arrestin-1 essentially as well as P-Rh* in native disc membranes. We also measured the affinity of arrestin-1 for P-Rh* in nanodiscs using a fluorescence-based assay and found that arrestin-1 interacts with monomeric P-Rh* with low nanomolar affinity and 1:1 stoichiometry, as previously determined in native disc membranes. Thus, similar to transducin activation, rhodopsin phosphorylation by GRK1 and high affinity arrestin-1 binding only requires a rhodopsin monomer.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3020750PMC
http://dx.doi.org/10.1074/jbc.M110.151043DOI Listing

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