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天然叶酸和抗叶酸化合物在小鼠L1210白血病细胞中的膜转运:载体介导和受体介导转运系统的作用

Membrane transport of natural folates and antifolate compounds in murine L1210 leukemia cells: role of carrier- and receptor-mediated transport systems.

作者信息

Westerhof G R, Jansen G, van Emmerik N, Kathmann I, Rijksen G, Jackman A L, Schornagel J H

机构信息

Department of Oncology, Free University Hospital, Amsterdam, The Netherlands.

出版信息

Cancer Res. 1991 Oct 15;51(20):5507-13.

PMID:1655252
Abstract

L1210-B73 cells, variants of L1210 cells grown in medium containing nanomolar concentrations of folates, express a membrane associated folate binding protein (mFBP) in addition to the classical reduced folate/methotrexate carrier (RF/MTX-carrier) present in L1210 cells grown in standard high folate medium (G. Jansen et al., Cancer Res., 49: 1959-1963, 1989). In this study we used L1210-B73 and L1210 cells as a model system to study the affinity of the RF/MTX-carrier and the mFBP for the natural folate compounds folic acid and 5-formyltetrahydrofolate (5-CHO-THF), as well as a number of antifolate compounds. Furthermore we studied the contribution of the RF/MTX-carrier and the mFBP in membrane transport of these (anti)folates, and finally we analyzed the role of the mFBP and RF/MTX-carrier in the cytotoxic effects of the antifolates. The antifolates used were either inhibitors of dihydrofolate reductase, including methotrexate (MTX) and 10-ethyl-10-deazaaminopterin (10-EdAM), or two folate-based inhibitors of thymidylate synthase, N10-propargyl-5,8-dideazafolic acid (CB3717) and 2-deamino-2-methyl-N10-propargyl-5,8-dideazafolic acid (ICI-198,583). The affinity of the RF/MTX-carrier for natural and antifolate compounds declined in the order 10-EdAM greater than or equal to ICI-198,583 greater than or equal to 5-CHO-THF greater than MTX much greater than CB3717 much greater than folic acid. The mFBP exhibited a high binding affinity for CB3717 and ICI-198,583 but a poor binding affinity for MTX and 10-EdAM. Binding affinities of the mFBP decreased in the order CB3717 greater than or equal to folic acid = ICI-198,583 greater than or equal to 5-CHO-THF much greater than MTX = 10-EdAM. Over 24 h, at 25 nM, [3H]folic acid uptake in L1210-B73 cells was found to proceed for more than 98% via the mFBP. Uptake of [3H]-5-CHO-THF, at 50 nM extracellular concentration, occurred via both the mFBP (81%) and the RF/MTX-carrier (19%). With respect to antifolates, the mFBP in L1210-B73 cells contributed for less than 30% in the uptake of [3H]MTX but was the predominant route (92%) in the uptake of [3H]ICI-198,583. Results from affinity and membrane transport observations were consistent with growth inhibition studies on L1210-B73 cells demonstrating that the mFBP played only a minor role in the cytotoxic effects of MTX or 10-EdAM. On the other hand, L1210-B73 cells were significantly more sensitive to CB3717 (220-fold) and ICI-198,583 (10-fold) than parental L1210 cells.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

L1210 - B73细胞是L1210细胞在含有纳摩尔浓度叶酸的培养基中生长形成的变体,除了在标准高叶酸培养基中生长的L1210细胞中存在的经典还原型叶酸/甲氨蝶呤载体(RF/MTX载体)外,还表达一种膜相关叶酸结合蛋白(mFBP)(G. 扬森等人,《癌症研究》,49: 1959 - 1963,1989年)。在本研究中,我们使用L1210 - B73和L1210细胞作为模型系统,研究RF/MTX载体和mFBP对天然叶酸化合物叶酸和5 - 甲酰四氢叶酸(5 - CHO - THF)以及多种抗叶酸化合物的亲和力。此外,我们研究了RF/MTX载体和mFBP在这些(抗)叶酸的膜转运中的作用,最后我们分析了mFBP和RF/MTX载体在抗叶酸药物细胞毒性作用中的作用。所使用的抗叶酸药物要么是二氢叶酸还原酶抑制剂,包括甲氨蝶呤(MTX)和10 - 乙基 - 10 - 脱氮氨基蝶呤(10 - EdAM),要么是两种基于叶酸的胸苷酸合成酶抑制剂,N10 - 炔丙基 - 5,8 - 二脱氮叶酸(CB3717)和2 - 脱氨基 - 2 - 甲基 - N10 - 炔丙基 - 5,8 - 二脱氮叶酸(ICI - 198,583)。RF/MTX载体对天然和抗叶酸化合物的亲和力顺序为:10 - EdAM≥ICI - 198,583≥5 - CHO - THF>MTX>>CB3717>叶酸。mFBP对CB3717和ICI - 198,583表现出高结合亲和力,但对MTX和10 - EdAM的结合亲和力较差。mFBP的结合亲和力顺序为:CB3717≥叶酸 = ICI - 198,583≥5 - CHO - THF>>MTX = 10 - EdAM。在25 nM时,经过24小时,发现L1210 - B73细胞中[³H]叶酸的摄取超过98%是通过mFBP进行的。在细胞外浓度为50 nM时,[³H] - 5 - CHO - THF的摄取通过mFBP(81%)和RF/MTX载体(19%)两者进行。关于抗叶酸药物,L1210 - B73细胞中的mFBP在[³H]MTX的摄取中贡献小于30%,但在[³H]ICI - 198,583的摄取中是主要途径(92%)。亲和力和膜转运观察结果与对L1210 - B73细胞生长抑制研究结果一致,表明mFBP在MTX或10 - EdAM的细胞毒性作用中仅起次要作用。另一方面,L1210 - B73细胞对CB3717(220倍)和ICI - 198,583(10倍)的敏感性明显高于亲本L1210细胞。(摘要截断于400字)

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