Centre for Skin Sciences, Faculty of Life Sciences, University of Bradford, Bradford, UK.
LVMH Recherche, F-45804 Saint Jean de Braye, France.
Exp Dermatol. 2017 Nov;26(11):1125-1133. doi: 10.1111/exd.13395. Epub 2017 Aug 15.
Skin pigmentation is directed by epidermal melanin units, characterized by long-lived and dendritic epidermal melanocytes (MC) that interact with viable keratinocytes (KC) to contribute melanin to the epidermis. Previously, we reported that MC:KC contact is required for melanosome transfer that can be enhanced by filopodi, and by UVR/UVA irradiation, which can upregulate melanosome transfer via Myosin X-mediated control of MC filopodia. Both MC and KC express Ca -dependent E-cadherins. These homophilic adhesion contacts induce transient increases in intra-KC Ca , while ultraviolet radiation (UVR) raises intra-MC Ca via calcium-selective ORAI1 ion channels; both are associated with regulating melanogenesis. However, how Ca triggers melanin transfer remains unclear. Here we evaluated the role of E-cadherin in UVR-mediated melanin transfer in human skin cells. MC and KC in human epidermis variably express filopodia-associated E-cadherin, Cdc42, VASP and β-catenin, all of which were upregulated by UVR in human MC in vitro. Knockdown of E-cadherin revealed that this cadherin is essential for UVR-induced MC filopodia formation and melanin transfer. Moreover, Ca induced a dose-dependent increase in filopodia formation and melanin transfer, as well as increased β-catenin, Cdc42, Myosin X and E-cadherin expression in these skin cells. Together, these data suggest that filopodial proteins and E-cadherin, which are upregulated by intracellular (UVR-stimulated) and extracellular Ca availability, are required for filopodia formation and melanin transfer. This may open new avenues to explore how Ca signalling influences human pigmentation.
皮肤色素沉着由表皮黑色素单位指导,其特征是长寿命和树突状表皮黑素细胞 (MC) 与有活力的角质形成细胞 (KC) 相互作用,将黑色素贡献到表皮中。以前,我们报道了 MC:KC 接触是黑色素体转移所必需的,这种转移可以通过丝状伪足增强,并且可以通过紫外线/ UVA 照射增强,紫外线/ UVA 照射可以通过肌球蛋白 X 介导的 MC 丝状伪足控制来上调黑色素体转移。MC 和 KC 都表达钙依赖性 E-钙粘蛋白。这些同源粘附接触诱导 KC 内 Ca 的短暂增加,而紫外线辐射 (UVR) 通过钙选择性 ORAI1 离子通道提高 MC 内 Ca ;两者都与调节黑色素生成有关。然而,钙如何触发黑色素转移仍不清楚。在这里,我们评估了 E-钙粘蛋白在人皮肤细胞中 UVR 介导的黑色素转移中的作用。人表皮中的 MC 和 KC 可变地表达与丝状伪足相关的 E-钙粘蛋白、Cdc42、VASP 和 β-连环蛋白,所有这些在体外人 MC 中均被 UVR 上调。E-钙粘蛋白的敲低表明这种钙粘蛋白对于 UVR 诱导的 MC 丝状伪足形成和黑色素转移是必不可少的。此外,Ca 诱导丝状伪足形成和黑色素转移的剂量依赖性增加,以及这些皮肤细胞中 β-连环蛋白、Cdc42、肌球蛋白 X 和 E-钙粘蛋白表达的增加。总之,这些数据表明,丝状伪足蛋白和 E-钙粘蛋白,它们被细胞内(UVR 刺激的)和细胞外 Ca 可用性上调,是丝状伪足形成和黑色素转移所必需的。这可能为探索 Ca 信号如何影响人类色素沉着开辟新途径。