D'Mello Stacey A N, Finlay Graeme J, Baguley Bruce C, Askarian-Amiri Marjan E
Department of Molecular Medicine and Pathology, University of Auckland, Faculty of Medical and Health Sciences, University of Auckland, 85 Park Rd. Grafton, Auckland 1023, New Zealand.
Auckland Cancer Society Research Centre, University of Auckland, Faculty of Medical and Health Sciences, University of Auckland, 85 Park Rd. Grafton, Auckland 1023, New Zealand.
Int J Mol Sci. 2016 Jul 15;17(7):1144. doi: 10.3390/ijms17071144.
Melanocytes are melanin-producing cells found in skin, hair follicles, eyes, inner ear, bones, heart and brain of humans. They arise from pluripotent neural crest cells and differentiate in response to a complex network of interacting regulatory pathways. Melanins are pigment molecules that are endogenously synthesized by melanocytes. The light absorption of melanin in skin and hair leads to photoreceptor shielding, thermoregulation, photoprotection, camouflage and display coloring. Melanins are also powerful cation chelators and may act as free radical sinks. Melanin formation is a product of complex biochemical events that starts from amino acid tyrosine and its metabolite, dopa. The types and amounts of melanin produced by melanocytes are determined genetically and are influenced by a variety of extrinsic and intrinsic factors such as hormonal changes, inflammation, age and exposure to UV light. These stimuli affect the different pathways in melanogenesis. In this review we will discuss the regulatory mechanisms involved in melanogenesis and explain how intrinsic and extrinsic factors regulate melanin production. We will also explain the regulatory roles of different proteins involved in melanogenesis.
黑素细胞是产生黑色素的细胞,存在于人类的皮肤、毛囊、眼睛、内耳、骨骼、心脏和大脑中。它们起源于多能神经嵴细胞,并在复杂的相互作用调节途径网络的作用下分化。黑色素是由黑素细胞内源性合成的色素分子。皮肤和毛发中黑色素的光吸收导致光感受器屏蔽、体温调节、光保护、伪装和显色。黑色素也是强大的阳离子螯合剂,可能充当自由基汇。黑色素的形成是一系列复杂生化事件的产物,这些事件始于氨基酸酪氨酸及其代谢产物多巴。黑素细胞产生的黑色素的类型和数量由基因决定,并受多种外在和内在因素的影响,如激素变化、炎症、年龄和紫外线照射。这些刺激影响黑素生成的不同途径。在这篇综述中,我们将讨论黑素生成所涉及的调节机制,并解释内在和外在因素如何调节黑色素的产生。我们还将解释参与黑素生成的不同蛋白质的调节作用。