Maresca Vittoria, Flori Enrica, Cardinali Giorgia, Briganti Stefania, Lombardi Daniela, Mileo Anna Maria, Paggi Marco G, Picardo Mauro
San Gallicano Dermatological Institute, Via E. Chianesi, Rome, Italy.
J Cell Physiol. 2006 Mar;206(3):843-8. doi: 10.1002/jcp.20543.
Recently, after the identification of ferritin light chain (L-ferritin) gene and protein over-expression in human metastatic melanoma cells, we engineered, starting from the LM metastatic melanoma cell line, clones in which L-ferritin gene expression was down-regulated by the stable expression of a specific antisense construct. The present investigation started from the observation that L-ferritin down-regulated LM cells displayed a less pigmented phenotype, confirmed by a major decrease of total melanin, when compared to control LM cells. This finding was accompanied by a dramatic decrease in tyrosinase activity, which was not paralleled by a concomitant reduction of the amount of tyrosinase specific mRNA. Western blot analysis of tyrosinase in control LM cells displayed a pattern, which corresponds to the progressive glycosylation of the native protein up to the 80 kDa form, considered the functional one. Tyrosinase pattern assayed in L-ferritin down-regulated LM cells showed the remarkable absence of the 80 kDa form and a prevalence of endoglycosidase H (endo H)-sensitive immature (70 kDa) tyrosinase, accumulated in the endoplasmic reticulum (ER), as confirmed by confocal microscopy analysis. These results demonstrate that, in a human metastatic melanoma cell line, the stress condition promoted by L-ferritin down-modulation, can substantially influence proper maturation of tyrosinase.
最近,在鉴定出人转移性黑色素瘤细胞中铁蛋白轻链(L-铁蛋白)基因和蛋白过表达后,我们从LM转移性黑色素瘤细胞系出发,构建了一些克隆,其中L-铁蛋白基因表达通过特定反义构建体的稳定表达而下调。本研究始于以下观察结果:与对照LM细胞相比,L-铁蛋白下调的LM细胞表现出色素沉着较少的表型,总黑色素大量减少证实了这一点。这一发现伴随着酪氨酸酶活性的急剧下降,而酪氨酸酶特异性mRNA的量并没有相应减少。对照LM细胞中酪氨酸酶的蛋白质印迹分析显示出一种模式,该模式对应于天然蛋白直至80 kDa形式的渐进性糖基化,80 kDa形式被认为是功能性形式。在L-铁蛋白下调的LM细胞中检测到的酪氨酸酶模式显示,明显没有80 kDa形式,并且存在大量对内切糖苷酶H(endo H)敏感的未成熟(70 kDa)酪氨酸酶,这些酶在内质网(ER)中积累,共聚焦显微镜分析证实了这一点。这些结果表明,在人转移性黑色素瘤细胞系中,L-铁蛋白下调所促进的应激条件可显著影响酪氨酸酶的正常成熟。