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全基因组方法表明CD44与细胞对卡铂的抗性有关。

Whole-genome approach implicates CD44 in cellular resistance to carboplatin.

作者信息

Shukla Sunita J, Duan Shiwei, Wu Xiaolin, Badner Judith A, Kasza Kristen, Dolan M Eileen

机构信息

Department of Human Genetics, University of Chicago, Chicago, IL 60637, USA.

出版信息

Hum Genomics. 2009 Jan;3(2):128-42. doi: 10.1186/1479-7364-3-2-128.

Abstract

Carboplatin is a chemotherapeutic agent used in the management of many cancers, yet treatment is limited by resistance and toxicities. To achieve a better understanding of the genetic contribution to carboplatin resistance or toxicities, lymphoblastoid cell lines from 34 large Centre d'Etude du Polymorphisme Humain pedigrees were utilised to evaluate interindividual variation in carboplatin cytotoxicity. Significant heritability, ranging from 0.17-0.36 (p = 1 x 10(-7) to 9 x 10(-4)), was found for cell growth inhibition following 72-hour treatment at each carboplatin concentration (10, 20, 40 and 80 microM) and IC(50) (concentration for 50 per cent cell growth inhibition). Linkage analysis revealed 11 regions with logarithm of odds (LOD) scores greater than 1.5. The highest LOD score on chromosome 11 (LOD = 3.36, p = 4.2 x 10(-5)) encompasses 65 genes within the 1 LOD confidence interval for the carboplatin IC 50 . We further analysed the IC(50) phenotype with a linkage-directed association analysis using 71 unrelated HapMap and Perlegen cell lines and identified 18 single nucleotide polymorphisms within eight genes that were significantly associated with the carboplatin IC(50) (p < 3.6 x 10(-5); false discovery rate <5 per cent). Next, we performed linear regression on the baseline expression and carboplatin IC(50) values of the eight associated genes, which identified the most significant correlation between CD44 expression and IC(50) (r(2)= 0.20; p = 6 x 10(-4)). The quantitative real-time polymerase chain reaction further confirmed a statistically significant difference in CD44 expression levels between carboplatin-resistant and -sensitive cell lines (p = 5.9 x 10(-3)). Knockdown of CD44 expression through small interfering RNA resulted in increased cellular sensitivity to carboplatin (p < 0.01). Our whole-genome approach using molecular experiments identified CD44 as being important in conferring cellular resistance to carboplatin.

摘要

卡铂是一种用于多种癌症治疗的化疗药物,但治疗受到耐药性和毒性的限制。为了更好地了解基因对卡铂耐药性或毒性的影响,我们利用来自34个大型人类多态性研究中心家系的淋巴母细胞系来评估卡铂细胞毒性的个体间差异。在每个卡铂浓度(10、20、40和80微摩尔)及IC50(50%细胞生长抑制浓度)下进行72小时处理后,发现细胞生长抑制具有显著的遗传力,范围为0.17 - 0.36(p = 1×10⁻⁷至9×10⁻⁴)。连锁分析揭示了11个对数优势(LOD)得分大于1.5的区域。11号染色体上最高的LOD得分(LOD = 3.36,p = 4.2×10⁻⁵)在卡铂IC50的1个LOD置信区间内包含65个基因。我们使用71个无关的HapMap和Perlegen细胞系,通过连锁定向关联分析进一步分析了IC50表型,并在8个基因中鉴定出18个与卡铂IC50显著相关的单核苷酸多态性(p < 3.6×10⁻⁵;错误发现率 < 5%)。接下来,我们对8个相关基因的基线表达和卡铂IC50值进行线性回归,发现CD44表达与IC50之间的相关性最为显著(r² = 0.20;p = 6×10⁻⁴)。定量实时聚合酶链反应进一步证实了卡铂耐药和敏感细胞系之间CD44表达水平存在统计学上的显著差异(p = 5.9×10⁻³)。通过小分子干扰RNA敲低CD44表达导致细胞对卡铂的敏感性增加(p < 0.01)。我们使用分子实验的全基因组方法确定CD44在赋予细胞对卡铂的耐药性方面很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/30b2/3525281/f2bbe281d990/1479-7364-3-2-128-1.jpg

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