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在甲氨蝶呤转运缺陷的中国仓鼠卵巢细胞中恢复甲氨蝶呤敏感性并降低叶酸载体活性的人cDNA的分离。

Isolation of human cDNAs that restore methotrexate sensitivity and reduced folate carrier activity in methotrexate transport-defective Chinese hamster ovary cells.

作者信息

Wong S C, Proefke S A, Bhushan A, Matherly L H

机构信息

Developmental Therapeutics Program, Michigan Cancer Foundation, Detroit 48201, USA.

出版信息

J Biol Chem. 1995 Jul 21;270(29):17468-75. doi: 10.1074/jbc.270.29.17468.

Abstract

This report describes the isolation, nucleotide sequencing, and functional expression of human cDNAs that restore reduced folate carrier activity in transport-defective cells. Based on homology to a partial murine cDNA probe, two functional cDNAs were isolated from a lambda gt11 library prepared from methotrexate transport upregulated K562 cells (K562.4CF). A 2.8-kilobase (kb) clone, KS43, contained a 1776-base pair open reading frame. The 2.5-kb clone, KS32, contained an internal deletion (626 base pairs) resulting a shortened open reading frame and 3'-untranslated region. KS43 and KS32 encoded proteins with multiple hydrophobic domains, one consensus N-glycosylation site, and predicted molecular masses of 65 and 58 kDa, respectively. The deduced amino acid sequence of KS43 is 79% and 80% homologous to the mouse and hamster sequences, respectively (Dixon, K. H., Lanpher, B. C., Chiu, J., Kelley, K., and Cowan, K. H. (1994) J. Biol. Chem. 269, 17-20; Williams, F. M. R., Murray R. C., Underhill, T. M., and Flintoff, W. F. (1994) J. Biol. Chem. 269, 5810-5816). Northern blots identified one primary transcript at 3.1 kb in parental K562, K562.4CF, and transport-impaired K500E cells; transcript levels varied by 7-fold. The expression of both KS43 and KS32 in methotrexate transport-defective Chinese hamster ovary cells restored methotrexate sensitivity and transport. Certain transport characteristics of the transfected cells resembled both the wild type human (K562) and hamster "classical" reduced folate carriers, suggesting the expression of a hybrid system. For instance, based on Ki values, up to a 4-fold increased affinity for 1843U89 over wild type hamster cells (typical of human cells), and a 19-fold increased affinity for methotrexate over K562 cells (typical of hamster cells) was observed. Further, a photoaffinity probe with high specificity for the reduced folate carrier labeled 94-kDa proteins in K562 cells and the transfectant containing the full-length KS43, and a 85-kDa protein in the transfectant containing the 3'-truncated KS32. No specifically labeled proteins were detected in wild type or mock-transfected hamster cells. Collectively, our results suggest that the KS43/KS32 cDNAs encode the human reduced folate carrier; however, additional modulatory/regulatory factors may be required to manifest the full spectrum of transport substrate activities typical of this system.

摘要

本报告描述了在运输缺陷型细胞中恢复还原型叶酸载体活性的人cDNA的分离、核苷酸测序及功能表达。基于与部分小鼠cDNA探针的同源性,从由甲氨蝶呤转运上调的K562细胞(K562.4CF)构建的λgt11文库中分离出两个功能性cDNA。一个2.8千碱基(kb)的克隆KS43,包含一个1776个碱基对的开放阅读框。2.5 kb的克隆KS32包含一个内部缺失(626个碱基对),导致开放阅读框和3'非翻译区缩短。KS43和KS32编码的蛋白质具有多个疏水结构域、一个共有N-糖基化位点,预测分子量分别为65 kDa和58 kDa。KS43推导的氨基酸序列与小鼠和仓鼠序列的同源性分别为79%和80%(迪克森,K.H.,兰弗,B.C.,邱,J.,凯利,K.,考恩,K.H.(1994)《生物化学杂志》269,17 - 20;威廉姆斯,F.M.R.,默里,R.C.,昂德希尔,T.M.,弗林托夫,W.F.(1994)《生物化学杂志》269,5810 - 5816)。Northern印迹法在亲本K562、K562.4CF和运输受损的K500E细胞中鉴定出一个3.1 kb的主要转录本;转录水平相差7倍。KS43和KS32在甲氨蝶呤运输缺陷的中国仓鼠卵巢细胞中的表达恢复了甲氨蝶呤敏感性和运输能力。转染细胞的某些运输特性类似于野生型人(K562)和仓鼠“经典”还原型叶酸载体,表明表达了一种混合系统。例如,基于Ki值,观察到对1843U89的亲和力比野生型仓鼠细胞高4倍(人细胞的典型特征),对甲氨蝶呤的亲和力比K562细胞高19倍(仓鼠细胞的典型特征)。此外,一种对还原型叶酸载体具有高特异性的光亲和探针在K562细胞和含有全长KS43的转染细胞中标记了94 kDa的蛋白质,在含有3'端截短的KS32的转染细胞中标记了85 kDa的蛋白质。在野生型或mock转染的仓鼠细胞中未检测到特异性标记的蛋白质。总体而言,我们的结果表明KS43/KS32 cDNA编码人还原型叶酸载体;然而,可能需要额外的调节/调控因子来展现该系统典型的运输底物活性的全谱。

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