Calcium activates the light-dependent conductance in melanopsin-expressing photoreceptors of amphioxus.

Abstract:

:Melanopsin, the photopigment of the "circadian" receptors that regulate the biological clock and the pupillary reflex in mammals, is homologous to invertebrate rhodopsins. Evidence supporting the involvement of phosphoinositides in light-signaling has been garnered, but the downstream effectors that control the light-dependent conductance remain unknown. Microvillar photoreceptors of the primitive chordate amphioxus also express melanopsin and transduce light via phospholipase-C, apparently not acting through diacylglycerol. We therefore examined the role of calcium in activating the photoconductance, using simultaneous, high time-resolution measurements of membrane current and Ca(2+) fluorescence. The light-induced calcium rise precedes the onset of the photocurrent, making it a candidate in the activation chain. Moreover, photolysis of caged Ca elicits an inward current of similar size, time course and pharmacology as the physiological photoresponse, but with a much shorter latency. Internally released calcium thus emerges as a key messenger to trigger the opening of light-dependent channels in melanopsin-expressing microvillar photoreceptors of early chordates.

authors

Peinado G,Osorno T,Gomez Mdel P,Nasi E

doi

10.1073/pnas.1420265112

subject

Has Abstract

pub_date

2015-06-23 00:00:00

pages

7845-50

issue

25

eissn

0027-8424

issn

1091-6490

pii

1420265112

journal_volume

112

pub_type

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