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BRCA1 expression modulates chemosensitivity of BRCA1-defective HCC1937 human breast cancer cells

机译:BRCA1表达调节BRCA1缺陷型HCC1937人乳腺癌细胞的化学敏感性

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摘要

Germline mutations of the tumour suppressor gene BRCA1 are involved in the predisposition and development of breast cancer and account for 20–45% of all hereditary cases. There is an increasing evidence that these tumours are characterised by a specific phenotype and pattern of gene expression. We have hypothesised that differences in chemosensitivity might parallel molecular heterogeneity of hereditary and sporadic breast tumours. To this end, we have investigated the chemosensitivity of the BRCA1-defective HCC1937 breast cancer cell line, and the BRCA1-competent MCF-7 (hormone-sensitive) and MDA-MB231 (hormone-insensitive) breast cancer cell lines using the MTT assay. The 50% inhibitory concentration (IC50) for the individual compounds were derived by interpolate plot analysis of the logarithmic scalar concentration curve after a 48 h exposure. HCC1937 cells were significantly (P<0.005) more sensitive to cisplatin (CDDP) (IC50 : 30–40 μM) compared with MCF-7 (IC50 : 60–70 μM) and MDA-MB231 (IC50 : 90–100 μM) cells. On the other hand, BRCA1-defective breast cancer cells were significantly less sensitive to doxorubicin (Dox) (IC50 : 45–50 μM) compared with MCF-7 (IC50 : 1–5 μM) and MDA-MB231 (IC50 : 5–10 μM) (P<0.02), as well as to paclitaxel (Tax) (IC50 : >2 μM for HCC1937, 0.1–0.2 μM for MCF-7 and 0.01–0.02 μM for MDA-MB231) (P<0.001). Full-length BRCA1 cDNA transfection of BRCA1-defective HCC1937 cells led to the reconstituted expression of BRCA1 protein in HCC1937/WTBRCA1-derived cell clone, but did not reduce tumour cell growth in soft agar. BRCA1 reconstitution reverted the hypersensitivity to CDDP (P<0.02), and restored the sensitivity to Dox (P<0.05) and Tax (P<0.001), compared with parental HCC1937 cells. Taken together, our findings suggest a specific chemosensitivity profile of BRCA1-defective cells in vitro, which is dependent on BRCA1 protein expression, and suggest prospective preclinical and clinical investigation for the development of tailored therapeutical approaches in this setting.
机译:肿瘤抑制基因BRCA1的种系突变与乳腺癌的易感性和发展有关,占所有遗传病例的20–45%。越来越多的证据表明,这些肿瘤的特征在于基因表达的特定表型和模式。我们假设化学敏感性的差异可能与遗传性和散发性乳腺肿瘤的分子异质性平行。为此,我们使用MTT分析法研究了BRCA1缺陷型HCC1937乳腺癌细胞系,具有BRCA1能力的MCF-7(激素敏感性)和MDA-MB231(激素不敏感性)乳腺癌细胞系的化学敏感性。 。暴露48?h后,通过对数标量浓度曲线的插值图分析得出单个化合物的50%抑制浓度(IC50)。与MCF-7(IC50:60–70μM)和MDA-MB231(IC50:90–100μM)细胞相比,HCC1937细胞对顺铂(CDDP)(IC50:30–40μM)的敏感性显着(P <0.005)。 。另一方面,BRCA1缺陷型乳腺癌细胞对阿霉素(Dox)(IC50:45–5045μM)的敏感性显着低于MCF-7(IC50:1-5μM)和MDA-MB231(IC50:5– 10μM)(P <0.02),以及紫杉醇(Tax)(IC50:HCC1937> 2μM,MCF-7为0.1–0.20.1μM,MDA-MB231为0.01–0.02μM)(P <0.001)。 BRCA1缺陷的HCC1937细胞的全长BRCA1 cDNA转染导致BRCA1蛋白在HCC1937 / WT BRCA1的细胞克隆中重组表达,但并没有降低软琼脂中肿瘤细胞的生长。与亲代HCC1937细胞相比,BRCA1重建可恢复对CDDP的超敏性(P <0.02),并恢复对Dox(P <0.05)和Tax(P <0.001)的敏感性。综上所述,我们的研究结果表明体外依赖BRCA1蛋白表达的BRCA1缺陷细胞具有特定的化学敏感性,并建议在这种情况下进行定制治疗方法的前期临床前和临床研究。

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