Tsukiji Nagaharu, Nishihara Daisuke, Yajima Ichiro, Takeda Kazuhisa, Shibahara Shigeki, Yamamoto Hiroaki
Department of Developmental Biology and Neurosciences, Graduate School of Life Sciences, Tohoku University, Sendai, Miyagi, Japan.
Dev Biol. 2009 Feb 15;326(2):335-46. doi: 10.1016/j.ydbio.2008.11.029. Epub 2008 Dec 7.
Mitf has been reported to play a crucial role in regulating the differentiation of pigment cells in homeothermal animals, i.e. the melanocytes and the retinal pigment epithelium (RPE). However, less is known about the functions of Mitf in the developing RPE. To elucidate such functions, we introduced wild-type and dominant-negative Mitf expression vectors into chick optic vesicles by electroporation. Over-expression of wild-type Mitf altered neural retina cells to become RPE-like and repressed the expression of neural retina markers in vivo. In contrast, dominant-negative Mitf inhibited pigmentation in the RPE. The percentage of BrdU-positive cells decreased during normal RPE development, which was followed by Mitf protein expression. The percentage of BrdU-positive cells decreased in the wild-type Mitf-transfected neural retina, but increased in the dominant-negative Mitf-transfected RPE. p27(kip1), one of the cyclin-dependent kinase inhibitors, begins to be expressed in the proximal region of the RPE at stage 16. Transfection of wild-type Mitf induced expression of p27(kip1), while transfection of dominant-negative Mitf inhibited p27(kip1) expression. We found that Mitf was associated with the endogenous p27(kip1) 5' flanking region. These results demonstrate for the first time "in vivo" that Mitf uniquely regulates both differentiation and cell proliferation in the developing RPE.
据报道,小眼畸形相关转录因子(Mitf)在恒温动物色素细胞的分化调控中发挥关键作用,即黑素细胞和视网膜色素上皮(RPE)。然而,关于Mitf在发育中的RPE中的功能,人们了解较少。为阐明这些功能,我们通过电穿孔将野生型和显性负性Mitf表达载体导入鸡视泡。野生型Mitf的过表达使神经视网膜细胞转变为RPE样细胞,并在体内抑制神经视网膜标志物的表达。相反,显性负性Mitf抑制RPE中的色素沉着。在正常RPE发育过程中,BrdU阳性细胞的百分比下降,随后是Mitf蛋白表达。在野生型Mitf转染的神经视网膜中,BrdU阳性细胞的百分比下降,但在显性负性Mitf转染的RPE中增加。细胞周期蛋白依赖性激酶抑制剂之一p27(kip1)在第16阶段开始在RPE的近端区域表达。野生型Mitf的转染诱导p27(kip1)的表达,而显性负性Mitf的转染抑制p27(kip1)的表达。我们发现Mitf与内源性p27(kip1)5'侧翼区域相关。这些结果首次在“体内”证明Mitf独特地调节发育中的RPE中的分化和细胞增殖。