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黑素小体的pH值控制黑素细胞和黑色素瘤细胞中黑素生成的速率、真黑素/褐黑素比例以及黑素小体的成熟。

Melanosomal pH controls rate of melanogenesis, eumelanin/phaeomelanin ratio and melanosome maturation in melanocytes and melanoma cells.

作者信息

Ancans J, Tobin D J, Hoogduijn M J, Smit N P, Wakamatsu K, Thody A J

机构信息

Department of Biomedical Sciences, University of Bradford, Bradford, BD7 1DP, United Kingdom

出版信息

Exp Cell Res. 2001 Aug 1;268(1):26-35. doi: 10.1006/excr.2001.5251.

Abstract

The skin pigment melanin is produced in melanocytes in highly specialized organelles known as melanosomes. Melanosomes are related to the organelles of the endosomal/lysosomal pathway and can have a low internal pH. In the present study we have shown that melanin synthesis in human pigment cell lysates is maximal at pH 6.8. We therefore investigated the role of intramelanosomal pH as a possible control mechanism for melanogenesis. To do this we examined the effect of neutralizing melanosomal pH on tyrosinase activity and melanogenesis in 11 human melanocyte cultures and in 3 melanoma lines. All melanocyte cultures (9 of 9) from Caucasian skin as well as two melanoma cell lines with comparable melanogenic activity showed rapid (within 24 h) increases in melanogenesis in response to neutralization of melanosomal pH. Chemical analysis of total melanin indicated a preferential increase in eumelanin production. Electron microscopy revealed an accumulation of melanin and increased maturation of melanosomes in response to pH neutralization. In summary, our findings show that: (i) near neutral melanosomal pH is optimal for human tyrosinase activity and melanogenesis; (ii) melanin production in Caucasian melanocytes is suppressed by low melanosomal pH; (iii) the ratio of eumelanin/phaeomelanin production and maturation rate of melanosomes can be regulated by melanosomal pH. We conclude that melanosomal pH is an essential factor which regulates multiple stages of melanin production. Furthermore, since we have recently identified that pink locus product (P protein) mediates neutralization of melanosomal pH, we propose that P protein is a key control point for skin pigmentation. We would further propose that the wide variations in both constitutive and facultative skin pigmentation seen in the human population could be associated with the high degree of P-locus polymorphism.

摘要

皮肤色素黑色素是在被称为黑素小体的高度特化细胞器中的黑素细胞内产生的。黑素小体与内体/溶酶体途径的细胞器相关,并且其内部pH值可能较低。在本研究中,我们已经表明,人类色素细胞裂解物中的黑色素合成在pH 6.8时达到最大值。因此,我们研究了黑素小体内pH值作为黑色素生成可能的控制机制的作用。为此,我们检测了中和黑素小体pH值对11个人类黑素细胞培养物和3个黑色素瘤细胞系中酪氨酸酶活性和黑色素生成的影响。来自白种人皮肤的所有黑素细胞培养物(9个中的9个)以及两个具有可比黑色素生成活性的黑色素瘤细胞系,在黑素小体pH值中和后均显示黑色素生成迅速(在24小时内)增加。总黑色素的化学分析表明真黑素产量优先增加。电子显微镜显示,作为对pH值中和的反应,黑色素积累且黑素小体成熟增加。总之,我们的研究结果表明:(i)接近中性的黑素小体pH值最适合人类酪氨酸酶活性和黑色素生成;(ii)低黑素小体pH值会抑制白种人黑素细胞中的黑色素生成;(iii)真黑素/褐黑素的产量比例和黑素小体的成熟速率可由黑素小体pH值调节。我们得出结论,黑素小体pH值是调节黑色素生成多个阶段的关键因素。此外,由于我们最近发现粉红基因座产物(P蛋白)介导黑素小体pH值的中和,我们提出P蛋白是皮肤色素沉着的关键控制点。我们还进一步提出,人类群体中观察到的先天性和适应性皮肤色素沉着的广泛差异可能与P基因座的高度多态性有关。

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