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首页> 外文期刊>薬物動態 >Does ABCG2 Need a Heterodimer Partner? Expression and Functional Evaluation of ABCG2 (Arg 482)
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Does ABCG2 Need a Heterodimer Partner? Expression and Functional Evaluation of ABCG2 (Arg 482)

机译:ABCG2需要异二聚体伴侣吗? ABCG2的表达和功能评估(ARG 482)

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摘要

Accumulating evidence suggests that several ATP-binding cassette (ABC) transporters mediate the elimination of anticancer drugs from cancer cells and thereby confer drug resistance. SN-38-selected PC-6/SN2-5H human lung carcinoma cells were shown to overexpress ABCG2 with the reduced intracellular accumulation of SN-38, the active metabolite of irinotecan. We have recently demonstrated that plasma membrane vesicles prepared from those cells transported SN-38 in an ATP-dependent manner, and it was suggested that ABCG2 is involved in the active extrusion of SN-38 from cancer cells. In the present study, we have cloned the cDNA of ABCG2 from PC-6/SN2-5H human lung carcinoma cells, expressed ABCG2 in Sf9 insect cells, and characterized its function. Sequence analysis has revealed that the cloned ABCG2 has an arginine at the amino acid position 482, as does the wild type. Expression of the cloned ABCG2 in Sf9 cell membranes was detected by immunoblotting with the BXP-21 antibody. Contrary to our expectation, however, ATPase activity in the cell membranes expressing ABCG2 was stimulated by neither SN-38 nor rhodamine 123. It is suggested that there is a partner protein of ABCG2 required for heterodimer formation to exhibit transport activity toward SN-38.
机译:累积证据表明,几种ATP结合盒(ABC)转运蛋白介导从癌细胞中消除抗癌药物,从而赋予耐药性。 SN-38选择的PC-6 / SN2-5H人肺癌细胞显示出过表达ABCG2,随着SN-38的细胞内积累,Irinotecan的活性代谢物降低。我们最近证明,由那些细胞制备的血浆膜囊泡以ATP依赖性方式传送SN-38,并且建议ABCG2参与来自癌细胞的SN-38的活性挤出。在本研究中,我们已经克隆了来自PC-6 / SN2-5H人肺癌细胞的ABCG2的cDNA,在SF9昆虫细胞中表达ABCG2,并表征其功能。序列分析表明,克隆的ABCG2在氨基酸位置482处具有精氨酸,如野生型。通过用BXP-21抗体免疫印迹检测克隆ABCG2在SF9细胞膜中的表达。然而,与我们的期望相反,表达ABCG2的细胞膜中的ATPase活性既不是SN-38也不rhodamine 123刺激。建议存在异二聚体形成所需的ABCG2的合作蛋白,以表现出对Sn-38的运输活性。

著录项

  • 来源
    《薬物動態》 |2002年第2期|共6页
  • 作者单位

    Department of Biomolecular Engineering Graduate School of Bioscience and Biotechnology Tokyo Institute of Technology Yokohama Kanagawa Japan;

    Departmetn of Drug Metabolism and Disposition Meiji Pharmaceutical University Kiyose Tokyo Japan;

    Department of Biomolecular Engineering Graduate School of Bioscience and Biotechnology Tokyo Institute of Technology Yokohama Kanagawa Japan;

    Department of Biomolecular Engineering Graduate School of Bioscience and Biotechnology Tokyo Institute of Technology Yokohama Kanagawa Japan;

    Department of Biomolecular Engineering Graduate School of Bioscience and Biotechnology Tokyo Institute of Technology Yokohama Kanagawa Japan;

    GS PlatZ Co. Ltd. Nihonbashi Chuo-ku Tokyo Japan;

    Departmetn of Drug Metabolism and Disposition Meiji Pharmaceutical University Kiyose Tokyo Japan;

    Departmetn of Drug Metabolism and Disposition Meiji Pharmaceutical University Kiyose Tokyo Japan;

    GS PlatZ Co. Ltd. Nihonbashi Chuo-ku Tokyo Japan;

    Department of Biomolecular Engineering Graduate School of Bioscience and Biotechnology Tokyo Institute of Technology Yokohama Kanagawa Japan;

    Department of Biomolecular Engineering Graduate School of Bioscience and Biotechnology Tokyo Institute of Technology Yokohama Kanagawa Japan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药学;制药化学工业;
  • 关键词

    abc transporter; abcg2; bcrp; sn-38; camptothecin; insect cells;

    机译:ABC Transporter;ABCG2;BCRP;SN-38;CAMPTOTHECIN;昆虫细胞;

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