Laboratory of Comparative Physiology of Pigmentation, Department of Physiology, Institute of Biosciences, University of São Paulo, São Paulo, Brazil.
DNA Repair Lab, Department of Microbiology, Institute of Biomedical Sciences, University of São Paulo (USP), São Paulo, Brazil.
Biochim Biophys Acta Mol Cell Res. 2020 Oct;1867(10):118789. doi: 10.1016/j.bbamcr.2020.118789. Epub 2020 Jul 6.
Cutaneous melanocytes and melanoma cells express several opsins, of which melanopsin (OPN4) detects temperature and UVA radiation. To evaluate the interaction between OPN4 and UVA radiation, normal and malignant Opn4 and Opn4 melanocytes were exposed to three daily low doses (total 13.2 kJ/m) of UVA radiation. UVA radiation led to a reduction of proliferation in both Opn4 cell lines; however, only in melanoma cells this effect was associated with increased cell death by apoptosis. Daily UVA stimuli induced persistent pigment darkening (PPD) in both Opn4 cell lines. Upon Opn4 knockout, all UVA-induced effects were lost in three independent clones of Opn4 melanocytes and melanoma cells. Per1 bioluminescence was reduced after 1st and 2 UVA radiations in Opn4 cells. In Opn4 melanocytes and melanoma cells, an acute increase of Per1 expression was seen immediately after each stimulus. We also found that OPN4 expression is downregulated in human melanoma compared to normal skin, and it decreases with disease progression. Interestingly, metastatic melanomas with low expression of OPN4 present increased expression of BMAL1 and longer overall survival. Collectively, our findings reinforce the functionality of the photosensitive system of melanocytes that may subsidize advancements in the understanding of skin related diseases, including cancer.
皮肤黑素细胞和黑色素瘤细胞表达几种视蛋白,其中黑视蛋白(OPN4)可检测温度和 UVA 辐射。为了评估 OPN4 与 UVA 辐射之间的相互作用,正常和恶性 Opn4 和 Opn4 黑素细胞分别接受了每日三次低剂量(总剂量为 13.2kJ/m)的 UVA 辐射。UVA 辐射导致两种 Opn4 细胞系的增殖减少;然而,只有在黑色素瘤细胞中,这种效应与通过细胞凋亡导致的细胞死亡增加有关。每日 UVA 刺激在两种 Opn4 细胞系中均诱导持久的色素沉着(PPD)。在 Opn4 敲除后,三种独立的 Opn4 黑素细胞和黑色素瘤细胞克隆中,所有 UVA 诱导的作用均消失。在 Opn4 细胞中,第一和第二次 UVA 辐射后 Per1 生物发光减少。在 Opn4 黑素细胞和黑色素瘤细胞中,每次刺激后立即观察到 Per1 表达的急性增加。我们还发现,与正常皮肤相比,人黑色素瘤中 OPN4 的表达下调,并且随着疾病的进展而减少。有趣的是,OPN4 表达低的转移性黑色素瘤表现出更高的 BMAL1 表达和更长的总生存期。总之,我们的发现强化了黑素细胞光敏系统的功能,这可能有助于深入了解皮肤相关疾病,包括癌症。