Mouse Embryology Section, Genetic Disease Research Branch, National Human Genome Research Institute, National Institutes of Health, Bethesda, MD, USA.
Wiley Interdiscip Rev Syst Biol Med. 2009 Nov-Dec;1(3):359-371. doi: 10.1002/wsbm.20.
Extensive studies of the biology of the pigment-producing cell (melanocyte) have resulted in a wealth of knowledge regarding the genetics and developmental mechanisms governing skin and hair pigmentation. The ease of identification of altered pigment phenotypes, particularly in mouse coat color mutants, facilitated early use of the pigmentary system in mammalian genetics and development. In addition to the large collection of developmental genetics data, melanocytes are of interest because their malignancy results in melanoma, a highly aggressive and frequently fatal cancer that is increasing in Caucasian populations worldwide. The genetic programs regulating melanocyte development, function, and malignancy are highly complex and only partially understood. Current research in melanocyte development and pigmentation is revealing new genes important in these processes and additional functions for previously known individual components. A detailed understanding of all the components involved in melanocyte development and function, including interactions with neighboring cells and response to environmental stimuli, will be necessary to fully comprehend this complex system. The inherent characteristics of pigmentation biology as well as the resources available to researchers in the pigment cell community make melanocytes an ideal cell type for analysis using systems biology approaches. In this review, the study of melanocyte development and pigmentation is considered as a candidate for systems biology-based analyses.
对产生色素的细胞(黑素细胞)的生物学进行了广泛的研究,从而获得了大量关于控制皮肤和头发色素沉着的遗传学和发育机制的知识。改变的色素表型很容易识别,特别是在小鼠毛色突变体中,这促进了色素系统在哺乳动物遗传学和发育中的早期应用。除了大量的发育遗传学数据外,黑素细胞之所以受到关注,是因为它们的恶性转化导致黑色素瘤,这是一种高度侵袭性且经常致命的癌症,在全球白种人群体中发病率正在上升。调节黑素细胞发育、功能和恶性转化的遗传程序非常复杂,目前只部分了解。目前对黑素细胞发育和色素沉着的研究正在揭示这些过程中重要的新基因,以及以前已知的单个成分的其他功能。详细了解黑素细胞发育和功能所涉及的所有成分,包括与相邻细胞的相互作用和对环境刺激的反应,对于充分理解这一复杂系统是必要的。色素生物学的固有特征以及色素细胞研究人员可获得的资源,使黑素细胞成为使用系统生物学方法进行分析的理想细胞类型。在这篇综述中,黑素细胞的发育和色素沉着研究被认为是基于系统生物学的分析的候选对象。