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锌α-2-糖蛋白调节正常和恶性黑素细胞的黑色素生成。

Zinc alpha-2-glycoprotein regulates melanin production by normal and malignant melanocytes.

作者信息

Hale Laura P

机构信息

Department of Pathology and the Comprehensive Cancer Center, Duke University Medical Center, Durham, North Carolina 27710, USA.

出版信息

J Invest Dermatol. 2002 Aug;119(2):464-70. doi: 10.1046/j.1523-1747.2002.01813.x.

Abstract

Zinc alpha-2-glycoprotein is secreted by a variety of normal and malignant epithelial cells and overexpression by tumors has been implicated in cancer cachexia. To investigate biologic properties of zinc alpha-2-glycoprotein further, stable transfectants of recombinant human zinc alpha-2-glycoprotein were created in the B16F10 murine melanoma cell line. Both B16-recombinant human zinc alpha-2-glycoprotein clones with strong expression of zinc alpha-2-glycoprotein and vector-transfected B16 cells treated with exogenous zinc alpha-2-glycoprotein had decreased melanin production in vitro. Furthermore, B16-recombinant human zinc alpha-2-glycoprotein clones formed amelanotic tumors in vivo, despite their melanin production in vitro. Although no qualitative differences in tyrosinase mRNA expression could be detected by reverse transcription-polymerase chain reaction, B16-recombinant human zinc alpha-2-glycoprotein tumors had decreased levels of tyrosinase protein and minimal tyrosinase activity. Purified zinc alpha-2-glycoprotein also decreased tyrosinase activity in vector-transfected B16 tumor sections in vitro. Taken together, these studies demonstrate that zinc alpha-2-glycoprotein inhibits melanin production by B16 melanoma cells via post-transcriptional effects on tyrosinase protein. As zinc alpha-2-glycoprotein decreases melanin synthesis more strongly in vivo than in vitro, however, it is likely that zinc alpha-2-glycoprotein affects melanin synthesis through indirect mechanisms as well. Zinc alpha-2-glycoprotein also inhibits melanin production by melan-A primary melanocytes in vitro. As zinc alpha-2-glycoprotein is normally produced by epidermal keratinocytes, these studies raise the possibility that epidermal-derived zinc alpha-2-glycoprotein may play a part in normal regulation of melanin production in vivo, in addition to its previously described role in cancer cachexia.

摘要

锌α-2-糖蛋白由多种正常和恶性上皮细胞分泌,肿瘤中该蛋白的过表达与癌症恶病质有关。为了进一步研究锌α-2-糖蛋白的生物学特性,在B16F10小鼠黑色素瘤细胞系中构建了重组人锌α-2-糖蛋白的稳定转染子。锌α-2-糖蛋白表达强烈的两个B16-重组人锌α-2-糖蛋白克隆以及用外源性锌α-2-糖蛋白处理的载体转染B16细胞在体外均有黑色素生成减少。此外,B16-重组人锌α-2-糖蛋白克隆在体内形成无黑色素肿瘤,尽管它们在体外有黑色素生成。虽然通过逆转录-聚合酶链反应未检测到酪氨酸酶mRNA表达的定性差异,但B16-重组人锌α-2-糖蛋白肿瘤中酪氨酸酶蛋白水平降低且酪氨酸酶活性极低。纯化的锌α-2-糖蛋白在体外也降低了载体转染的B16肿瘤切片中的酪氨酸酶活性。综上所述,这些研究表明锌α-2-糖蛋白通过对酪氨酸酶蛋白的转录后作用抑制B16黑色素瘤细胞的黑色素生成。然而,由于锌α-2-糖蛋白在体内比在体外更强烈地降低黑色素合成,锌α-2-糖蛋白可能也通过间接机制影响黑色素合成。锌α-2-糖蛋白在体外也抑制黑色素瘤-A原代黑素细胞的黑色素生成。由于锌α-2-糖蛋白通常由表皮角质形成细胞产生,这些研究提出了一种可能性,即除了其先前描述的在癌症恶病质中的作用外,表皮来源的锌α-2-糖蛋白可能在体内黑色素生成的正常调节中发挥作用。

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