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酪氨酸酶及酪氨酸酶相关蛋白-1(TRP-1)细胞内转运的研究。内质网(ER)-葡糖苷酶抑制的作用。

Investigation of the intracellular transport of tyrosinase and tyrosinase related protein (TRP)-1. The effect of endoplasmic reticulum (ER)-glucosidases inhibition.

作者信息

Negroiu G, Branza-Nichita N, Costin G E, Titu H, Petrescu A J, Dwek R A, Petrescu S M

机构信息

Institute of Biology, Splaiul Independentei 296, Bucharest, Romania.

出版信息

Cell Mol Biol (Noisy-le-grand). 1999 Nov;45(7):1001-10.

Abstract

Melanin biosynthesis is completely inhibited in the B16 melanoma cells following their incubation with inhibitors of the two ER glucosidases. This is primarily due to the inactivation of tyrosinase. Under the same conditions, the DOPA-oxidase activity of TRP-1 was only partially affected. In this report we investigate the effects of the perturbation of N-glycan processing in ER on the transport and activation of tyrosinase and TRP-1. We have localized the DOPA-oxidase activity in normal and inhibited cells and suggest that the first DOPA-reactive compartment of the secretory pathway (trans Golgi network) is also the site of tyrosinase activation. The inhibition of N-glycan processing does not affect the intracellular trafficking of the two melanogenic enzymes that are correctly transported to melanosomes. Immunoprecipitation experiments followed by analysis in SDS-PAGE under non-reducing conditions suggest that in inhibited cells, both tyrosinase and TRP-1 are synthesized in a modified conformation as compared to the normal proteins. These data suggest that the inhibition of melanin synthesis is not due to a defective transport but rather to conformational changes induced in the structure of tyrosinase and TRP-1 during their transit through the ER.

摘要

用两种内质网葡萄糖苷酶抑制剂孵育B16黑色素瘤细胞后,黑色素生物合成被完全抑制。这主要是由于酪氨酸酶失活。在相同条件下,TRP-1的多巴氧化酶活性仅受到部分影响。在本报告中,我们研究了内质网中N-聚糖加工的扰动对酪氨酸酶和TRP-1的转运及激活的影响。我们已在正常细胞和受抑制细胞中定位了多巴氧化酶活性,并表明分泌途径的第一个多巴反应性区室(反式高尔基体网络)也是酪氨酸酶激活的位点。N-聚糖加工的抑制并不影响这两种正确转运至黑素小体的黑色素生成酶的细胞内运输。在非还原条件下进行SDS-PAGE分析的免疫沉淀实验表明,与正常蛋白质相比,在受抑制细胞中,酪氨酸酶和TRP-1均以修饰后的构象合成。这些数据表明,黑色素合成的抑制并非由于运输缺陷,而是由于酪氨酸酶和TRP-1在通过内质网的过程中其结构发生的构象变化。

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