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Co-expression of murine opsins facilitates identifying the site of cone adaptation

Publication: Contribution to journalJournal articlepeer-review

Abstract

Murine cones contain two opsins in the same cone, one ultraviolet (UV) and the other middle-wavelength sensitive (M). A long-wavelength flash only affecting M-opsin suppresses the cone electroretinogram (ERG) produced by light absorption of UV-cone opsin raising the hypothesis that activation of M-cone opsin suppresses UV-cone opsin responses in the same cone. Here we show that pharmacologic blockade of synaptic transmission in the superfused murine retina, which eliminates interaction from second-order neurons, fails to prevent suppression of the UV-opsin driven pathway by long-wavelength stimuli. This proves that the antagonism must be occurring in the same cone, co-expressing both opsins. Our results show that UV-opsin suppression successively ceases in presence of the M-opsin activating background light, which implies that cone light adaptation is controlled at the opsin stage, before activation of transducin. It also reveals the time course of a transient desensitization of cones due to post-opsin factors in the transduction cascade.
Original languageEnglish
Pages (from-to)389-393
Number of pages5
JournalVisual Neuroscience
Volume19
Issue number4
DOIs
Publication statusPublished - 2002
Externally publishedYes

Keywords

  • mouse
  • cone
  • ultraviolet
  • light adaptation
  • co-expression

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