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抗叶酸敏感和耐药人类细胞系中叶酸聚谷氨酸合成酶的表达

Folylpolyglutamate synthetase expression in antifolate-sensitive and -resistant human cell lines.

作者信息

McGuire J J, Russell C A

机构信息

Grace Cancer Drug Center, Roswell Park Cancer Institute, Buffalo, NY 14263, USA.

出版信息

Oncol Res. 1998;10(4):193-200.

PMID:9778690
Abstract

Synthesis of poly(gamma-glutamyl) metabolites of many antifolates, such as methotrexate (MTX), by folylpolyglutamate synthetase (FPGS) is often essential to their cytotoxic activity. FPGS expression in the MTX-sensitive human T-lymphoblastic leukemia cell line CCRF-CEM and a number of MTX-resistant sublines was previously investigated at the DNA, RNA, and activity levels. Using an FPGS peptide deduced from its cDNA sequence, a rabbit polyclonal antibody to FPGS has now been elicited, immunoaffinity purified, and used to quantitate FPGS protein expression by chemiluminescent Western immunoblot analysis. The antibody was used to determine the half-life of human FPGS protein (3.7 +/- 1.1 h) in parental CCRF-CEM cells. A subline resistant to MTX as a result of amplified dihydrofolate reductase expression shows no change in FPGS protein or activity relative to CCRF-CEM. An MTX transport-defective line, however, displays both higher FPGS protein and activity levels. For several sublines in which the only apparent mechanism of MTX resistance is decreased FPGS activity, the FPGS protein level is decreased proportionally. However, we previously showed that these sublines have the same gene copy number, restriction map, and mRNA size and levels as the parent. Evidently, in these MTX-resistant sublines the mRNA is poorly translated and/or the protein turns over more rapidly.

摘要

许多抗叶酸剂(如甲氨蝶呤,MTX)的聚(γ-谷氨酰)代谢产物通过叶酰聚谷氨酸合成酶(FPGS)合成,这通常对它们的细胞毒性活性至关重要。先前已在DNA、RNA和活性水平上研究了MTX敏感的人T淋巴细胞白血病细胞系CCRF-CEM和一些MTX耐药亚系中FPGS的表达情况。利用从其cDNA序列推导的FPGS肽,现已制备出兔抗FPGS多克隆抗体,进行免疫亲和纯化,并通过化学发光Western免疫印迹分析用于定量FPGS蛋白表达。该抗体用于测定亲代CCRF-CEM细胞中人FPGS蛋白的半衰期(3.7±1.1小时)。由于二氢叶酸还原酶表达扩增而对MTX耐药的一个亚系相对于CCRF-CEM在FPGS蛋白或活性方面没有变化。然而,一个MTX转运缺陷细胞系显示出更高的FPGS蛋白和活性水平。对于几个MTX耐药的唯一明显机制是FPGS活性降低的亚系,FPGS蛋白水平也相应降低。然而,我们先前表明这些亚系与亲本具有相同的基因拷贝数、限制性图谱、mRNA大小和水平。显然,在这些MTX耐药亚系中,mRNA翻译不佳和/或蛋白质周转更快。

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