Rosemblat S, Sviderskaya E V, Easty D J, Wilson A, Kwon B S, Bennett D C, Orlow S J
Ronald O. Perelman Department of Dermatology, New York University School of Medicine, New York 10016, USA.
Exp Cell Res. 1998 Mar 15;239(2):344-52. doi: 10.1006/excr.1997.3901.
Mutations in the murine pink-eyed dilution (p) gene, or its human homologue P, result in oculocutaneous albinism. Melanocytes cultured from mice lacking p gene expression exhibit defective melanogenesis, but following culture in the presence of high concentrations of L-tyrosine, increased melanin deposition is observed. Electron microscopy and image analysis demonstrated that untreated p mutant melanocytes exhibited small melanosomes, largely of stages I-II. Following tyrosine treatment, increased proportions of stage III-IV melanosomes, almost normal in size, were observed. Levels of tyrosinase protein and to a lesser extent of tyrosinase-related protein-1 (TRP-1) were subnormal but rose dramatically following stimulation by tyrosine. Levels of TRP-2 and Pmel17/silver gene product were not altered, nor were the levels of mRNA for tyrosinase, TRP-1, TRP-2, or the Pmel17/silver gene product. As expected, the 110-kDa product of the p gene was absent from both stimulated and unstimulated p mutant cells. In a melanoblast line derived from the same mice, excess tyrosine failed to stimulate visible melanogenesis or increase the low levels of tyrosinase. The melanosomes in these cells were smaller still than those in the mutant melanocytes even when cultured in the presence of excess tyrosine. Thus, absence of the p gene product affects melanosomal structure and protein composition at the posttranscriptional level. These defects are correctable at least in part by supplementation with L-tyrosine.
小鼠粉红眼稀释(p)基因或其人类同源基因P发生突变会导致眼皮肤白化病。从缺乏p基因表达的小鼠中培养的黑素细胞表现出黑素生成缺陷,但在高浓度L-酪氨酸存在下培养后,观察到黑色素沉积增加。电子显微镜和图像分析表明,未经处理的p突变型黑素细胞表现出小的黑素小体,主要处于I-II期。酪氨酸处理后,观察到III-IV期黑素小体的比例增加,大小几乎正常。酪氨酸酶蛋白水平以及程度较轻的酪氨酸酶相关蛋白-1(TRP-1)水平低于正常,但在酪氨酸刺激后显著升高。TRP-2和Pmel17/银基因产物的水平没有改变,酪氨酸酶、TRP-1、TRP-2或Pmel17/银基因产物的mRNA水平也没有改变。正如预期的那样,p基因的110 kDa产物在受刺激和未受刺激的p突变细胞中均不存在。在源自同一只小鼠的黑素母细胞系中,过量的酪氨酸未能刺激可见的黑素生成或增加低水平的酪氨酸酶。即使在过量酪氨酸存在下培养,这些细胞中的黑素小体仍然比突变型黑素细胞中的更小。因此,p基因产物的缺失在转录后水平影响黑素小体的结构和蛋白质组成。这些缺陷至少部分可通过补充L-酪氨酸来纠正。