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小眼畸形在刺鼠信号蛋白对黑素细胞谱系分化及黑素生成的抑制作用中的参与情况。

Involvement of microphthalmia in the inhibition of melanocyte lineage differentiation and of melanogenesis by agouti signal protein.

作者信息

Aberdam E, Bertolotto C, Sviderskaya E V, de Thillot V, Hemesath T J, Fisher D E, Bennett D C, Ortonne J P, Ballotti R

机构信息

INSERM U385, Biologie et Physiopathologie de la Peau, Faculté de Médecine, 06107 Nice Cedex 2, France.

出版信息

J Biol Chem. 1998 Jul 31;273(31):19560-5. doi: 10.1074/jbc.273.31.19560.

Abstract

In mouse follicular melanocytes, production of eumelanins (brown-black pigments) and pheomelanins (yellow-brownish pigments) is under the control of two intercellular signaling molecules that exert opposite actions, alpha-melanocyte-stimulating hormone (alphaMSH) which preferentially increases the synthesis of eumelanins, and agouti signal protein (ASP) whose expression favors the production of hair containing pheomelanins. In this study, we report that ASP does not only affect mature melanocytes but can also inhibit the differentiation of melanoblasts. We show that both alphaMSH and forskolin promote the differentiation of murine melanoblasts into mature melanocytes and that ASP inhibits this process. We present evidence that the expression of a specific melanogenic transcription factor, microphthalmia, and its binding to an M box regulatory element, is inhibited by ASP. We also show that, in B16 murine melanoma cells, ASP inhibits alphaMSH-stimulated expression of tyrosinase, tyrosine-related proteins 1 and 2 through an inhibition of the transcription activity of their respective promoters. Further, ASP inhibits alphaMSH-induced expression of the microphthalmia gene and reduces the level of microphthalmia in the cells. Our data demonstrate that ASP can regulate both melanoblast differentiation and melanogenesis, pointing out the key role of microphthalmia in the control of these processes.

摘要

在小鼠毛囊黑素细胞中,真黑素(棕黑色色素)和褐黑素(黄棕色色素)的产生受两种具有相反作用的细胞间信号分子控制,即优先增加真黑素合成的α-黑素细胞刺激激素(αMSH)和其表达有利于含褐黑素毛发产生的刺鼠信号蛋白(ASP)。在本研究中,我们报告ASP不仅影响成熟黑素细胞,还能抑制黑素母细胞的分化。我们发现αMSH和福司可林均能促进小鼠黑素母细胞分化为成熟黑素细胞,而ASP则抑制这一过程。我们提供的证据表明,一种特定的黑素生成转录因子小眼畸形相关转录因子及其与M盒调控元件的结合受到ASP的抑制。我们还表明,在B16小鼠黑色素瘤细胞中,ASP通过抑制酪氨酸酶、酪氨酸相关蛋白1和2各自启动子的转录活性,抑制αMSH刺激的这些蛋白的表达。此外,ASP抑制αMSH诱导的小眼畸形基因的表达,并降低细胞中小眼畸形相关转录因子的水平。我们的数据表明,ASP可以调节黑素母细胞分化和黑素生成,指出小眼畸形相关转录因子在控制这些过程中的关键作用。

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