Bilodeau M L, Greulich J D, Hullinger R L, Bertolotto C, Ballotti R, Andrisani O M
Basic Medical Sciences Department, Purdue University, West Lafayette, Indiana 47906, USA.
Pigment Cell Res. 2001 Oct;14(5):328-36. doi: 10.1034/j.1600-0749.2001.140504.x.
Cells of the vertebrate neural crest (crest cells) differentiate in vitro to melanocytes and sympathoadrenal (SA) progenitor cells. We have shown previously, using primary J. quail neural crest cultures, the combinatorial effect of bone morphogenetic protein-2 (BMP-2) and cAMP signaling on SA cell development. Herein, we report that in primary J. quail neural crest cultures, BMP-2 and cAMP signaling similarly exert a combinatorial effect on melanocyte development. We demonstrate that BMP-2 treatment of neural crest cells increases melanogenesis by promoting the synthesis of melanin. This increased melanin synthesis by BMP-2 is effected by the selective increase in the transcription of the tyrosinase gene, encoding the rate-limiting enzyme of the melanin biosynthetic pathway. By contrast, BMP-2 exerts no effect on the expression of the tyrosine-related proteins 1 and 2 (Tyrpl and Dct), also involved in the melanin biosynthetic process, or on the expression of microphalmia (Mitf) gene, supporting the fact that BMP-2 does not affect melanocyte differentiation. Employing transient transfection analysis of tyrosinase-reporter constructs in B16 melanoma cells, we demonstrate that the BMP-2 response-element is localized between 900 and 1,100 bp upstream from the tyrosinase transcriptional start site. These studies support a role for BMP-2 in melanogenesis by selectively targeting the expression of the tyrosinase gene involved in melanin biosynthesis.
脊椎动物神经嵴细胞(嵴细胞)在体外可分化为黑素细胞和交感肾上腺(SA)祖细胞。我们之前利用原代鹌鹑神经嵴培养物,展示了骨形态发生蛋白-2(BMP-2)和cAMP信号对SA细胞发育的联合作用。在此,我们报告在原代鹌鹑神经嵴培养物中,BMP-2和cAMP信号对黑素细胞发育同样发挥联合作用。我们证明,用BMP-2处理神经嵴细胞可通过促进黑色素合成来增加黑素生成。BMP-2引起的黑色素合成增加是通过酪氨酸酶基因转录的选择性增加实现的,该基因编码黑色素生物合成途径的限速酶。相比之下,BMP-2对同样参与黑色素生物合成过程的酪氨酸相关蛋白1和2(Tyrp1和Dct)的表达,或小眼畸形(Mitf)基因的表达均无影响,这支持了BMP-2不影响黑素细胞分化这一事实。通过对B16黑色素瘤细胞中酪氨酸酶报告基因构建体进行瞬时转染分析,我们证明BMP-2反应元件位于酪氨酸酶转录起始位点上游900至1100 bp之间。这些研究支持BMP-2在黑素生成中的作用,即通过选择性靶向参与黑色素生物合成的酪氨酸酶基因的表达来发挥作用。