Publication | Closed Access
Multiple Phosphorylation Sites Confer Reproducibility of the Rod's Single-Photon Responses
128
Citations
17
References
2006
Year
Active LifetimeMolecular BiologyCryptochromeSingle Absorbed PhotonsOptogeneticsPhototropinC TerminusBiophysicsHealth SciencesPhotonicsMolecular PhysiologyPhotochemistryBiochemistryMechanistic PhotochemistryG Protein-coupled ReceptorPhoton StatisticSingle-molecule DetectionPhotoreceptor CellSignal TransductionMultiphoton ProcessMedicineSingle-photon Responses
Although signals controlled by single molecules are expected to be inherently variable, rod photoreceptors generate reproducible responses to single absorbed photons. We show that this unexpected reproducibility-the consistency of amplitude and duration of rhodopsin activity-varies in a graded and systematic manner with the number but not the identity of phosphorylation sites on rhodopsin's C terminus. These results indicate that each phosphorylation site provides an independent step in rhodopsin deactivation and that collectively these steps tightly control rhodopsin's active lifetime. Other G protein cascades may exploit a similar mechanism to encode accurately the timing and number of receptor activation.
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