Data from Copper-Transporting P-Type ATPase, ATP7A, Confers Multidrug Resistance and Its Expression Is Related to Resistance to SN-38 in Clinical Colon Cancer

ATP7A型 流出 布雷菲尔德A 喜树碱 多重耐药 阿霉素 癌症研究 药理学 生物 高尔基体 抗药性 化学 分子生物学 ATP酶 医学 内科学 生物化学 化疗 细胞 微生物学
作者
Satsuki Owatari,Satoshi Akune,Masaharu Komatsu,Ryuji Ikeda,Stephen Firth,Xiaofang Che,Masatatsu Yamamoto,Kazutake Tsujikawa,Masaki Kitazono,Takashi Ishizawa,Tōru Takeuchi,Takashi Aikou,Julian F. B. Mercer,Shin‐ichi Akiyama,Tatsuhiko Furukawa
标识
DOI:10.1158/0008-5472.c.6494855
摘要

<div>Abstract<p>We and others have shown that the copper transporters ATP7A and ATP7B play a role in cellular resistance to <i>cis</i>-diaminedichloroplatinum (II) (CDDP). In this study, we found that <i>ATP7A</i> transfection of Chinese hamster ovary cells (CHO-K1) and fibroblasts isolated from Menkes disease patients enhanced resistance not only to CDDP but also to various anticancer drugs, such as vincristine, paclitaxel, 7-ethyl-10-hydroxy-camptothecin (SN-38), etoposide, doxorubicin, mitoxantron, and 7-ethyl-10-[4-(1-piperidino)-1-piperidino] carbonyloxycamptothecin (CPT-11). ATP7A preferentially localized doxorubicin fluorescence to the Golgi apparatus in contrast to the more intense nuclear staining of doxorubicin in the parental cells. Brefeldin A partially and monensin completely altered the distribution of doxorubicin to the nuclei in the ATP7A-expressing cells. ATP7A expression also enhanced the efflux rates of doxorubicin and SN-38 from cells and increased the uptake of SN-38 in membrane vesicles. These findings strongly suggested that ATP7A confers multidrug resistance to the cells by compartmentalizing drugs in the Golgi apparatus and by enhancing efflux of these drugs, and the <i>trans</i>-Golgi network has an important role of ATP7A-related drug resistance. ATP7A was expressed in 8 of 34 (23.5%) clinical colon cancer specimens but not in the adjacent normal epithelium. Using the histoculture drug response assay that is useful for the prediction of drug sensitivity of clinical cancers, ATP7A-expressing colon cancer cells were significantly more resistant to SN-38 than ATP7A-negative cells. Thus, ATP7A confers resistance to various anticancer agents on cancer cells and might be a good index of drug resistance in clinical colon cancers. [Cancer Res 2007;67(10):4860–7]</p></div>
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