Skip to content
Opsin 4
ProteinQ92594· pop 17· linked from 559 articles

Also known as Opsin-4, melanopsin, OPN4

Melanopsin is a type of photopigment belonging to a larger family of light-sensitive retinal proteins called opsins and encoded by the gene Opn4. In the mammalian retina, there are two additional categories of opsins, both involved in the formation of visual images: rhodopsin and photopsin (types I, II, and III) in the rod and cone photoreceptor cells, respectively.

Protein · UniProt

Melanopsin

Gene
OPN4
Organism
Homo sapiens (Human)
Length
478 aa
Molecular mass
52,635 Da
Evidence
1: Evidence at protein level

G protein-coupled photoreceptor that signals through the G(q/11) family of G proteins in response to light in intrinsically photosensitive retinal ganglion cells (ipRGCs) (By similarity). Can also activate other G proteins, including G(i/o) and G(s), depending on the cell type, leading to either activation or inhibition of adenylate cyclase and cAMP-dependent signaling (PubMed:35274137). Activation occurs when opsin-bound cis-retinal chromophore absorbs a photon and isomerizes to all-trans-retinal, inducing a conformational change in the opsin that triggers a G protein-mediated phototransdu…

Alternative splicingBiological rhythmsCell membraneCell projectionChromophoreDisulfide bondG protein-coupled receptorMembrane
View on UniProt →

Swiss-Prot (reviewed) · via UniProt

Wikidata facts

Show 2 more facts
Commons category
Melanopsin
Sources (4)

via Wikidata · CC0

~16 min read

Article

14 sections
Contents
  • Discovery
  • Species distribution
  • Structure
  • Function
  • Mechanism
  • Effects on circadian rhythm
  • Regulation
  • Clinical significance
  • Restoration of vision
  • Control of sleep/wake patterns
  • Regulation of blood glucose levels
  • See also
  • References
  • Further reading

Melanopsin is a type of photopigment belonging to a larger family of light-sensitive retinal proteins called opsins and encoded by the gene Opn4. In the mammalian retina, there are two additional categories of opsins, both involved in the formation of visual images: rhodopsin and photopsin (types I, II, and III) in the rod and cone photoreceptor cells, respectively.

In humans, melanopsin is found in intrinsically photosensitive retinal ganglion cells (ipRGCs). It is also found in the iris of mice and primates. Melanopsin is also found in rats, amphioxus, and other chordates. ipRGCs are photoreceptor cells which are particularly sensitive to the absorption of short-wavelength (blue) visible light and communicate information directly to the area of the brain called the suprachiasmatic nucleus (SCN), also known as the central "body clock", in mammals. Melanopsin plays an important non-image-forming role in the setting of circadian rhythms as well as other functions. Mutations in the Opn4 gene can lead to clinical disorders, such as Seasonal Affective Disorder (SAD). According to one study, melanopsin has been found in eighteen sites in the human brain (outside the retinohypothalamic tract), intracellularly, in a granular pattern, in the cerebral cortex, the cerebellar cortex and several phylogenetically old regions, primarily in neuronal soma, not in nuclei. Melanopsin is also expressed in human cones. However, only 0.11% to 0.55% of human cones express melanopsin and are exclusively found in the peripheral regions of the retina. The human peripheral retina senses light at high intensities that is best explained by four different photopigment classes.

Gallery (4)

Connections

Categories