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Mammalian tyrosinase: biosynthesis, processing, and modulation by melanocyte-stimulating hormone.

机译:哺乳动物酪氨酸酶:黑色素刺激激素的生物合成,加工和调节。

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摘要

We have examined the rate of synthesis and degradation of tyrosinase (monophenol, 3,4-dihydroxyphenylalanine:oxygen oxidoreductase, EC 1.14.18.1), the critical enzyme involved in mammalian pigmentation, using pulse-chase metabolic labeling of murine melanoma cells and immunoprecipitation of protein extracts with antibodies directed specifically against the enzyme. We have found that tyrosinase is synthesized and glycosylated within melanocytes rapidly, since significant quantities of pulse-labeled enzyme could be detected within 30 min. The maximum amount of enzyme was processed within 4 hr, and the t1/2 of tyrosinase in vivo was 10 hr (compared to 120 hr with purified enzyme), suggesting that tyrosinase activity in melanocytes is at least in part regulated by rapid synthesis and active degradation. We also have examined the melanogenic stimulation caused by melanocyte-stimulating hormone, using metabolic labeling, radiometric assays, and immunofluorescence techniques; responding cells increased their melanogenic potential more than 7-fold within 4 days without increasing their levels of tyrosinase synthesis. The results demonstrate that a pool of inactive tyrosinase exists in melanocytes and that rapid increases in enzyme activity elicited by melanocyte-stimulating hormone reflect an alteration in the activity of a preexisting pool of intracellular tyrosinase.
机译:我们使用鼠类黑色素瘤细胞的脉冲追踪代谢标记和免疫沉淀技术检测了酪氨酸酶(单酚,3,4-二羟基苯丙氨酸:氧氧化还原酶,EC 1.14.18.1)的合成和降解速率,酪氨酸酶是哺乳动物色素沉着的关键酶。蛋白提取物具有针对酶的特异性抗体。我们发现酪氨酸酶在黑色素细胞内快速合成并糖基化,因为可以在30分钟内检测到大量的脉冲标记酶。在4小时内处理了最大量的酶,体内酪氨酸酶的t1 / 2为10小时(与纯化酶的120小时相比),表明黑素细胞中的酪氨酸酶活性至少部分受快速合成和活性的调节。降解。我们还使用代谢标记,放射分析和免疫荧光技术研究了由刺激黑素细胞的激素引起的黑素刺激;应答细胞在4天内将其黑色素生成潜能增加了7倍以上,而没有增加酪氨酸酶合成水平。结果表明黑素细胞中存在无活性的酪氨酸酶库,并且由黑素细胞刺激激素引起的酶活性的快速增加反映了细胞内酪氨酸酶库的先前活性的改变。

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