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野生型和分化诱导剂抗性HL-60细胞的表面膜糖蛋白

Surface membrane glycoproteins of wild-type and differentiation-inducer-resistant HL-60 cells.

作者信息

Felsted R L, Gupta S K, Glover C J, Gallagher R E

出版信息

Blood. 1985 Sep;66(3):606-13.

PMID:4027382
Abstract

Surface membrane glycoproteins (SMGs) of cells from the parental wild-type HL-60 cell line and from three sublines variably cross-resistant to the granulocyte differentiation-inducing effects of retinoic acid (RA), dimethylsulfoxide (DMSO), and certain purine bases (6-thioguanine [6TG] or hypoxanthine) were studied by one-dimensional and two-dimensional gel electrophoresis. After both oligosaccharide (periodate/borotritide) and peptide (1,3,4,6-tetrachloro-3 alpha, 6 alpha-diphenylglycouril) ectolabeling procedures, striking common changes were noted in the gel electrophoretic patterns of the SMGs from the RA- and 6TG-resistant sublines compared to those from the wild-type HL-60 line or the DMSO-resistant subline. Most prominently, this included the presence in the RA- and 6TG-resistant cells of an apparent high molecular weight acidic glycoprotein(s) (mol wt, 200 to 285 kilodaltons [kD]; isoelectric point range [pl], 4.5 to 6.0) not observed in the wild-type or DMSO-resistant cells and, conversely, the presence of a lower molecular weight glycoprotein(s) (mol wt, 120 to 165 kD; pl, 4.2 to 5.9) in the wild-type and DMSO-resistant cells, which was absent or much reduced in the RA- and 6TG-resistant cells. These acidic SMGs did not change as a function of the induction of granulocyte differentiation. However, some other more basic SMGs varied as a function of granulocyte differentiation in both the wild-type and differentiation inducer-resistant sublines, including the loss of the transferrin receptor and the gain of a mol wt 55- to 60-kD neutrophil-associated protein. In the context of previously reported information, these results indicate (1) that the overall pattern of SMG changes in the RA- and 6TG-resistant cells closely resembles that associated with multidrug (pleiotropic) resistance to cytotoxic agents in a variety of mammalian cells; (2) that the RA/6TG resistance-associated SMG changes are not granulocyte differentiation stage-specific; and (3) that either the RA/6TG resistance-associated SMG changes are not related to the resistance mechanism or they are involved in the resistance/cross-resistance mechanism(s) for RA/purine bases but not for DMSO.

摘要

采用一维和二维凝胶电泳法,研究了亲代野生型HL - 60细胞系及三个对维甲酸(RA)、二甲基亚砜(DMSO)和某些嘌呤碱(6 - 硫鸟嘌呤[6TG]或次黄嘌呤)的粒细胞分化诱导作用具有不同程度交叉抗性的亚系细胞的表面膜糖蛋白(SMG)。在进行寡糖(高碘酸盐/硼氢化三氚)和肽(1,3,4,6 - 四氯 - 3α,6α - 二苯基甘脲)胞外标记程序后,与野生型HL - 60细胞系或DMSO抗性亚系相比,RA和6TG抗性亚系的SMG凝胶电泳图谱出现了显著的共同变化。最显著的是,在RA和6TG抗性细胞中存在一种明显的高分子量酸性糖蛋白(分子量,200至285千道尔顿[kD];等电点范围[pl],4.5至6.0),而在野生型或DMSO抗性细胞中未观察到;相反,在野生型和DMSO抗性细胞中存在一种分子量较低的糖蛋白(分子量,120至165 kD;pl,4.2至5.9),在RA和6TG抗性细胞中则不存在或大量减少。这些酸性SMG不会随着粒细胞分化的诱导而变化。然而,在野生型和分化诱导剂抗性亚系中,一些其他碱性更强的SMG会随着粒细胞分化而变化,包括转铁蛋白受体的丢失和一种分子量为55至60 kD的中性粒细胞相关蛋白的增加。结合先前报道的信息,这些结果表明:(1)RA和6TG抗性细胞中SMG变化的总体模式与多种哺乳动物细胞中对细胞毒性药物的多药(多向性)抗性相关的模式非常相似;(2)与RA/6TG抗性相关的SMG变化不是粒细胞分化阶段特异性的;(3)要么与RA/6TG抗性相关的SMG变化与抗性机制无关,要么它们参与了RA/嘌呤碱的抗性/交叉抗性机制,但不参与DMSO的抗性机制。

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