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衣霉素对大鼠乳腺肿瘤腹水细胞唾液粘蛋白及自然杀伤敏感性的影响。

Effect of tunicamycin on sialomucin and natural killer susceptibility of rat mammary tumor ascites cells.

作者信息

Bharathan S, Moriarty J, Moody C E, Sherblom A P

机构信息

Department of Biochemistry, University of Maine, Orono 04469.

出版信息

Cancer Res. 1990 Sep 1;50(17):5250-6.

PMID:2386935
Abstract

The MAT-B1 and MAT-C1 ascites sublines of the 13762 rat mammary adenocarcinoma contain a dominant cell surface "complex" consisting of two glycoproteins: ascites sialoglycoprotein (ASGP)-1, a Mr 600,000-700,000 peanut agglutinin-binding sialomucin, and ASGP-2, a Mr 120,000 concancavalin A-binding glycoprotein (Sherblom et al., J. Biol. Chem., 255: 783-790, 1980; Sherblom and Carraway, J. Biol. Chem., 255: 12051-12059, 1980). Although both cell lines are resistant to lysis by natural killer cells, treatments which result in loss of cell surface ASGP-1 render the cells susceptible to natural killer cell lysis (Sherblom and Moody, Cancer Res., 46:4543-4546, 1986). Treatment of the ascites cells with 5 micrograms/ml tunicamycin for 24 h effectively inhibits glycosylation of ASGP-2 without affecting cell viability or total protein synthesis. Under these conditions, expression of ASGP-1 is depressed by at least 50% in both cell lines, as monitored by [3H]glucosamine incorporation and by binding of peanut agglutinin to intact cells. The size distribution of O-linked oligosaccharides in ASGP-1 from tunicamycin-treated versus control MAT-B1 cells is indistinguishable, as determined by Bio-Gel P-4 chromatography following alkaline-borohydride treatment. Complex isolated from either treated or control cells bands at the same density in a CsCl gradient containing Triton X-100 and contains a diffuse band corresponding to ASGP-2 by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Tunicamycin-treated cells, consistent with the reduced expression of ASGP-1, are significantly more susceptible to natural killer cell-mediated lysis, when compared to untreated controls. The results suggest that N-linked glycosylation is a prerequisite for sialomucin synthesis and/or complex formation.

摘要

13762大鼠乳腺腺癌的MAT - B1和MAT - C1腹水亚系含有一种主要的细胞表面“复合物”,该复合物由两种糖蛋白组成:腹水唾液酸糖蛋白(ASGP)-1,一种分子量为600,000 - 700,000的花生凝集素结合唾液粘蛋白,以及ASGP - 2,一种分子量为120,000的伴刀豆球蛋白A结合糖蛋白(Sherblom等人,《生物化学杂志》,255: 783 - 790,1980;Sherblom和Carraway,《生物化学杂志》,255: 12051 - 12059,1980)。虽然这两种细胞系对自然杀伤细胞的裂解具有抗性,但导致细胞表面ASGP - 1丢失的处理会使细胞易受自然杀伤细胞的裂解(Sherblom和Moody,《癌症研究》,46:4543 - 4546,1986)。用5微克/毫升衣霉素处理腹水细胞24小时可有效抑制ASGP - 2的糖基化,而不影响细胞活力或总蛋白合成。在这些条件下,通过[3H]葡糖胺掺入以及花生凝集素与完整细胞的结合监测,两种细胞系中ASGP - 1的表达均降低至少50%。经碱性硼氢化物处理后,通过Bio - Gel P - 4色谱法测定,衣霉素处理的MAT - B1细胞与对照细胞中ASGP - 1上O - 连接寡糖的大小分布无差异。在含有Triton X - 100的CsCl梯度中,从处理或对照细胞中分离的复合物在相同密度处条带,并且通过十二烷基硫酸钠 - 聚丙烯酰胺凝胶电泳含有对应于ASGP - 2的弥散条带。与未处理的对照相比,衣霉素处理的细胞由于ASGP - 1表达降低,对自然杀伤细胞介导的裂解明显更敏感。结果表明,N - 连接糖基化是唾液粘蛋白合成和/或复合物形成的先决条件。

相似文献

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Effect of tunicamycin on sialomucin and natural killer susceptibility of rat mammary tumor ascites cells.衣霉素对大鼠乳腺肿瘤腹水细胞唾液粘蛋白及自然杀伤敏感性的影响。
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