Furumura M, Sakai C, Potterf S B, Vieira W D, Barsh G S, Hearing V J
Laboratory of Cell Biology, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892, USA.
Proc Natl Acad Sci U S A. 1998 Jun 23;95(13):7374-8. doi: 10.1073/pnas.95.13.7374.
Molecular and biochemical mechanisms that modulate the production of eumelanin or pheomelanin pigments involve the opposing effects of two intercellular signaling molecules, alpha-melanocyte stimulating hormone (MSH) and agouti signal protein (ASP). ASP is an antagonist of MSH signaling through the melanocyte-specific MSH receptor, although its mechanism(s) of action is controversial. We previously have reported significant down-regulation of all known melanogenic genes during the eumelanin to pheomelanin switch in murine hair follicle melanocytes and in cultured melanocytes treated with recombinant ASP. To identify factors that might be involved in the switch to pheomelanogenesis, we screened ASP-treated melanocytes by using differential display and identified three up-regulated genes: a DNA replication control protein, a basic helix-loop-helix transcription factor, and a novel gene. We have simultaneously identified six down-regulated genes in ASP-treated melanocytes; two of those encode tyrosinase and TRP2, melanogenic genes known to be down-regulated during pheomelanogenesis, which provide good internal controls for this approach. These results suggest that there are complex mechanisms involved in the switch to pheomelanin production, and that these modulated genes might be involved in the pleiotropic changes seen in yellow mice, including the change in coat color.
调节真黑素或褐黑素生成的分子和生化机制涉及两种细胞间信号分子——α-黑素细胞刺激激素(MSH)和刺鼠信号蛋白(ASP)的相反作用。ASP是通过黑素细胞特异性MSH受体的MSH信号传导的拮抗剂,尽管其作用机制存在争议。我们之前报道过,在小鼠毛囊黑素细胞以及用重组ASP处理的培养黑素细胞中,从真黑素向褐黑素转变期间,所有已知的黑素生成基因均有显著下调。为了确定可能参与向褐黑素生成转变的因素,我们通过差异显示筛选了经ASP处理的黑素细胞,并鉴定出三个上调基因:一种DNA复制控制蛋白、一种碱性螺旋-环-螺旋转录因子和一个新基因。我们同时在经ASP处理的黑素细胞中鉴定出六个下调基因;其中两个基因编码酪氨酸酶和TRP2,这两个黑素生成基因在褐黑素生成过程中已知会下调,为该方法提供了良好的内部对照。这些结果表明,向褐黑素生成的转变涉及复杂的机制,并且这些被调节的基因可能参与了黄毛小鼠中所见的多效性变化,包括毛色的改变。