Furumura M, Potterf S B, Toyofuku K, Matsunaga J, Muller J, Hearing V J
Pigment Cell Biology Section, Laboratory of Cell Biology, NCI, National Institutes of Health, Bethesda, Maryland 20892, USA.
J Biol Chem. 2001 Jul 27;276(30):28147-54. doi: 10.1074/jbc.M101626200. Epub 2001 May 29.
In response to agouti signal protein, melanocytes switch from producing eumelanin to pheomelanin concomitant with the down-regulation of melanogenic gene transcription. We previously reported that a ubiquitous basic helix-loop-helix transcription factor, known as ITF2, is up-regulated during this switch, and we now report that treatment of melanocytes with melanocyte-stimulating hormone down-regulates expression of ITF2. To more fully characterize the involvement of ITF2 in regulating melanogenic gene transcription, ITF2 sense or antisense constructs were introduced into melan-a melanocytes. Gene and protein expression analyses and luciferase reporter assays using promoters from melanogenic genes showed that up-regulation of ITF2 suppressed melanogenic gene expression as well as the expression of Mitf, a melanocyte-specific transcription factor. In addition, stable ITF2 sense transfectants had significant reductions in pigmentation and a less dendritic phenotype compared with mock transfectants. In contrast, ITF2 antisense-transfected melanocytes were more pigmented and more dendritic. These results demonstrate that up-regulation of ITF2 during the pheomelanin switch is functionally significant and reveal that differential expression of a ubiquitous basic helix-loop-helix transcription factor can modulate expression of melanogenic genes and the differentiation of melanocytes.
在对刺鼠信号蛋白的应答中,黑素细胞从产生真黑素转变为产生褐黑素,同时黑素生成基因转录下调。我们之前报道过,一种名为ITF2的普遍存在的碱性螺旋-环-螺旋转录因子在这种转变过程中上调,现在我们报道用促黑素细胞激素处理黑素细胞会下调ITF2的表达。为了更全面地描述ITF2在调节黑素生成基因转录中的作用,将ITF2正义或反义构建体导入黑素-a黑素细胞。使用黑素生成基因启动子的基因和蛋白质表达分析以及荧光素酶报告基因检测表明,ITF2的上调抑制了黑素生成基因的表达以及黑素细胞特异性转录因子Mitf的表达。此外,与空载体转染细胞相比,稳定转染ITF2正义构建体的细胞色素沉着显著减少,树突状形态也减少。相反,反义转染ITF2的黑素细胞色素沉着更多,树突状形态更明显。这些结果表明,在褐黑素转变过程中ITF2的上调具有重要功能,并揭示了一种普遍存在的碱性螺旋-环-螺旋转录因子的差异表达可以调节黑素生成基因的表达和黑素细胞的分化。