4.5 Article

Melanopsin and rhodopsin mediate UVA-induced immediate pigment darkening: Unravelling the photosensitive system of the skin

期刊

EUROPEAN JOURNAL OF CELL BIOLOGY
卷 97, 期 3, 页码 150-162

出版社

ELSEVIER GMBH
DOI: 10.1016/j.ejcb.2018.01.004

关键词

Immediate pigment darkening (IPD); Ultraviolet A radiation (UVA); Melanocytes and melanoma; Opsins and light sensors

资金

  1. Sao Paulo Research Foundation (FAPESP) [2012/50214-4]
  2. National Council of Technological and Scientific Development (CNPq) [301293/2011-2, 303070/2015-3]
  3. FAPESP [2013/24337-4, 2014/16412-9]

向作者/读者索取更多资源

The mammalian skin has a photosensitive system comprised by several opsins, including rhodopsin (OPN2) and melanopsin (OPN4). Recently, our group showed that UVA (4.4 kJ/m(2)) leads to immediate pigment darkening (IPD) in murine normal and malignant melanocytes. We show the role of OPN2 and OPN4 as UVA sensors: UVA-induced IPD was fully abolished when OPN4 was pharmacologically inhibited by AA9253 or when OPN2 and OPN4 were knocked down by siRNA in both cell lines. Our data, however, demonstrate that phospholipase C/protein kinase C pathway, a classical OPN4 pathway, is not involved in WA-induced IPD in either cell line. Nonetheless, in both cell types we have shown that: a) intracellular calcium signal is necessary for WA-induced IPD; b) the involvement of CaMK II, whose inhibition, abolished the UVA-induced IPD; c) the role of CAMK II/NOS/sGC/cGMP pathway in the process since inhibition of either NOS or sGC abolished the WA-induced IPD. Taken altogether, we show that OPN2 and OPN4 participate in IPD induced by WA in murine normal and malignant melanocytes through a conserved common pathway. Interestingly, upon knockdown of OPN2 or OPN4, the UVA-driven IPD is completely lost, which suggests that both opsins are required and cooperatively signal in murine both cell lines. The participation of OPN2 and OPN4 system in UVA radiation-induced response, if proven to take place in human skin, may represent an interesting pharmacological target for the treatment of depigmentary disorders and skin-related cancer.

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