SELECTIVE INVIVO AND INVITRO INCORPORATION AND ACCUMULATION OF PHENOLIC THIOETHER AMINE INTO MALIGNANT-MELANOMA AND IDENTIFICATION OF A (58 KD) BINDING GLYCOPROTEIN

被引:5
作者
YAMADA, K [1 ]
JIMBOW, K [1 ]
机构
[1] UNIV ALBERTA,HERITAGE MED RES CTR,DIV DERMATOL & CUTANEOUS SCI,260G,EDMONTON T6G 2S2,ALBERTA,CANADA
关键词
BINDING PROTEINS; 4-S-CYSTEAMINYLPHENOL; MELANOCYTOTOXICITY;
D O I
10.1097/00008390-199211000-00002
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Our previous in vivo studies indicated that a phenolic thioether amine (PTEA), 4-S-cysteaminylphenol (CAP), selectively disintegrates melanocytes of black hair and skin, and inhibits the growth of murine and human malignant melanomas. To elucidate the mechanism of the in vivo melanocytotoxicity and anti-melanoma effect, this study examined the selectivity and specificity of PTEA incorporation into malignant melanoma cells using [C-14]4(2)-S-CAP, and then identified a PTEA-binding protein through a ligand binding assay using [I-125]-labelled cell lysates. Whole body autoradiography showed that [C-14]4-S-CAP is selectively incorporated and accumulated into the eye and tumours of a B16 melanoma-bearing mouse. SK MEL 23 human melanoma cells also showed a steady accumulation of [C-14]4-S-CAP (threefold at least up to 5 min) and of [C-14]2-S-CAP (sevenfold up to 20 min), compared with that of HeLa cells and fibroblasts, which plateau at 5 min. Chromatography of 4-S-CAP on an affinity column (both CH- and CNBr-activated Sepharose 4B) identified a 58 kD protein in melanoma cells, which was present at very low levels in HeLa cells; this 58 kD protein was retained by both 4-S- and 2-S-CAP affinity columns, but not by columns of a phenolic thioether (cysteinylphenol: CP) or a phenolic thioether amide (N-acetyl-4-S-CAP), and could be retrieved by either 4-S or 2-S-CAP but not by CP and N-acetyl-4-S-CAP. This protein was glycosylated, and contained mannose residues. Our findings clearly indicate that a 58 kD CAP-binding glycoprotein is highly expressed in melanoma cells and is probably responsible for the selective accumulation of PTEA into melanoma, and may even account for its melanocytotoxicity.
引用
收藏
页码:225 / 233
页数:9
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共 26 条
[11]  
Kawase M., Samejima K., Okada M., Mode of action of substituted propylamine cytotoxicity in culture cells, Biochem Pharmacol, 31, pp. 2983-2988, (1982)
[12]  
Wong M., Jimbow K., Selective cytotoxicity of N-acetyl-S-cysteaminylphenol on follicular melanocytes of black mice, Br J Dermatol, 186, pp. 56-61, (1991)
[13]  
Parsons P.G., Favier F., McEwan M., Et al., Action of cys-teaminylphenol in human melanoma cells, Melanoma Res, 1, pp. 97-104, (1991)
[14]  
Somayaji W., Wiebe L.I., Jimbow K., Experimental antimelanoma agents: The synthesis of 4-S-cysteaminyl-[U-<sup>14</sup>C]phenol, NUC Compact, 20, pp. 158-159, (1989)
[15]  
Jimbow K., Jimbow M., Chiba M., Characterization of structural properties of morphological differentiation of melanosomes
[16]  
I. Purification of tyrosinase by tyrosine affinity chromatography and its characterization in B16 and Harding Passey melanomas, J Invest Dermatol, 77, pp. 213-218, (1981)
[17]  
Laemmli L.K., Cleavage of structural properties during the assembly of head of bacteriophage T4, Nature, 227, pp. 665-666, (1970)
[18]  
Henry J.P., Gasnier B., Roisin M.-P., Et al., Molecular pharmacology of the monoamine transporter of the chromaffin granule membrane, Ann NY Acad Sci, 493, pp. 194-206, (1987)
[19]  
Pankovitch J.M., Jimbow K., Tyrosine transport in human melanotic melanoma cell line as the basis for rational melanoma chemotherapy, Biochem J, 280, pp. 721-725, (1991)
[20]  
Tanenbaum L., Tuffanelli D.L., Antimalarial agents: Chloroquine, hydroxychloroqine, and quinacrine, Arch Dermatol, 116, pp. 587-591, (1980)