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Carbonic anhydrase XII is a new therapeutic target to overcome chemoresistance in cancer cells

机译:碳酸酐酶XII是克服癌细胞化学耐药性的新治疗靶标

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摘要

Multidrug resistance (MDR) in cancer cells is a challenging phenomenon often associated with P-glycoprotein (Pgp) surface expression. Finding new ways to bypass Pgp-mediated MDR still remains a daunting challenge towards the successful treatment of malignant neoplasms such as colorectal cancer.We applied the Cell Surface Capture technology to chemosensitive and chemoresistant human colon cancer to explore the cell surface proteome of Pgp-expressing cells in a discovery-driven fashion. Comparative quantitative analysis of identified cell surface glycoproteins revealed carbonic anhydrase type XII (CAXII) to be up-regulated on the surface of chemoresistant cells, similarly to Pgp. In cellular models showing an acquired MDR phenotype due to the selective pressure of chemotherapy, the progressive increase of the transcription factor hypoxia-inducible factor-1 alpha was paralleled by the simultaneous up-regulation of Pgp and CAXII. CAXII and Pgp physically interacted at the cell surface. CAXII silencing or pharmacological inhibition with acetazolamide decreased the ATPase activity of Pgp by altering the optimal pH at which Pgp operated and promoted chemosensitization to Pgp substrates in MDR cells.We propose CAXII as a new secondary marker of the MDR phenotype that influences Pgp activity directly and can be used as a pharmacological target for MDR research and potential treatment.
机译:癌细胞中的多药耐药性(MDR)是一种挑战性现象,通常与P-糖蛋白(Pgp)表面表达相关。寻找绕过Pgp介导的MDR的新方法仍然是成功治疗恶性肿瘤(例如大肠癌)的艰巨挑战。我们将Cell Surface Capture技术应用于对化学敏感和具有化学抗性的人类结肠癌,以探索表达Pgp的细胞表面蛋白质组细胞以发现驱动的方式。鉴定的细胞表面糖蛋白的比较定量分析显示,与Pgp相似,XII型碳酸酐酶(CAXII)在化学抗性细胞的表面上调。在由于化疗的选择性压力而显示获得性MDR表型的细胞模型中,转录因子低氧诱导因子1α的逐步增加与Pgp和CAXII的同时上调平行。 CAXII和Pgp在细胞表面发生物理相互作用。 CAXII沉默或用乙酰唑胺抑制药理作用可通过改变Pgp操作的最佳pH值并促进MDR细胞对Pgp底物的化学增敏作用而降低Pgp的ATPase活性。可用作MDR研究和潜在治疗的药理靶标。

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