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Altered expression of FANCL confers mitomycin C sensitivity in Calu-6 lung cancer cells.

机译:FANCL表达的改变赋予Calu-6肺癌细胞丝裂霉素C敏感性。

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Fanconi anemia (FA) results from mutations in a group of genes whose products, including BRCA2 and BACH1/BRIP1, are known to function in one common pathway (the FA-BRCA pathway) to guard genome integrity, especially when challenged by DNA crosslinking agents, such as Cisplatin and mitomycin C (MMC). The extremely high incidence of cancer in FA patients reveals the essentialness of this pathway in tumor suppression. However, this pathway's involvement in nonFA cancers is not well understood. To evaluate the contribution of the FA-BRCA pathway to cancer, we investigated the integrity of the FA-BRCA pathway in ten human cancer cell lines. We found that the Calu-6 lung cancer cell line carries a defective FA-BRCA pathway. In this cell line, the examination of six FA proteins, essential for the activation of the FA-BRCA pathway, detected substantially reduced expression of FANCL, a catalytic subunit of the ubiquitin ligase/E3-complex. Reconstitution of FANCL in these cells restored the activation of the FA-BRCA pathway, but MMC sensitivity of the cells with a complemented FA-BRCA pathway was decreased as compared to the cells with an impaired FA-BRCA pathway. Collectively, the abnormal FANCL expression is the cause leading to a defective FA-BRCA pathway, which confers the sensitivity of Calu-6 cells to MMC. This suggests that the correlation of an intact FA-BRCA pathway with MMC resistance may emerge as a common mechanism underlying resistance to DNA crosslinking agents in cancer patients.
机译:范科尼贫血(FA)是由一组基因的突变引起的,这些基因的产物包括BRCA2和BACH1 / BRIP1,已知在一种常见途径(FA-BRCA途径)中发挥作用,以保护基因组完整性,尤其是在受到DNA交联剂挑战时,例如顺铂和丝裂霉素C(MMC)。 FA患者中癌症的极高发生率揭示了该途径在抑制肿瘤中的重要性。但是,该途径与非FA癌症的关系尚不清楚。为了评估FA-BRCA途径对癌症的贡献,我们研究了十种人类癌细胞系中FA-BRCA途径的完整性。我们发现Calu-6肺癌细胞系携带有缺陷的FA-BRCA途径。在该细胞系中,对FA-BRCA途径激活必不可少的6种FA蛋白的检测,检测到FANCL(泛素连接酶/ E3-复合物的催化亚基)的表达大大降低。这些细胞中FANCL的重建恢复了FA-BRCA途径的活化,但是与FA-BRCA途径受损的细胞相比,FA-BRCA途径互补的细胞的MMC敏感性降低。总的来说,异常FANCL表达是导致FA-BRCA途径缺陷的原因,这使Calu-6细胞对MMC敏感。这表明完整的FA-BRCA途径与MMC抗性的相关性可能作为癌症患者对DNA交联剂抗性的常见机制而出现。

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