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TONG/HCC细胞中CYP3A4拷贝数增加,但在其他人类的DNA中未增加。

Increased CYP3A4 copy number in TONG/HCC cells but not in DNA from other humans.

作者信息

Lamba Jatinder K, Chen Xin, Lan Lu-Bin, Kim Jin Woo, Wei Wang Xin, Relling Mary V, Kazuto Yasuda, Watkins Paul B, Strom Stephen, Sun Daxi, Schuetz John D, Schuetz Erin G

机构信息

Department of Pharmaceutical Sciences, St Jude Children's Research Hospital, Memphis, TN 38105, USA.

出版信息

Pharmacogenet Genomics. 2006 Jun;16(6):415-27. doi: 10.1097/01.fpc.0000194421.35641.70.

Abstract

Two recent screens for copy-number variations in the entire human genome found 12.4 gene copy number variations per person, including 2.5% of individuals with gains between 7q21.1 and 7q22.1, the chromosomal location of CYP3A4. CYP3A4 is involved in the metabolism of approximately 50% of all drugs, including many cancer chemotherapeutic agents. CYP3A4 gene copy was determined in DNA from 143 individuals: normal human livers, primary and secondary liver tumors, human hepatic cell lines, and immortalized cell lines representing eight ethnically diverse populations. CYP3A4 gene copy was normal in all but one sample, a primary human hepatocellular carcinoma cell line (TONG/HCC). Southern blots of TONG/HCC DNA revealed an approximate 10-fold increase in CYP3A and a corresponding increase in CYP3A mRNA expression and catalytic activity. Fluorescent in situ hybridization of TONG/HCC revealed specific amplification of the CYP3A4 gene on chromosome 7q21 but no amplification of the MDR1 gene that localizes 11.9 Mb upstream of CYP3A4. High resolution analysis of DNA copy number by comparative genomic hybridization confirmed amplification at 7q21.3-7q22. The amplicon spanned 1.7 Mb and contained 30 known genes, including the entire CYP3A locus. To determine whether CYP3A4 expression affected chemotherapeutic toxicity, LLC-PK1 cells were transduced with adenoviruses expressing CYP3A4 and P450 reductase. CYP3A4 conferred resistance to taxol, vinblastine and topotecan. These studies demonstrate that CYP3A4 copy number differences do not contribute to the normal variation in CYP3A4 expression. Tumors with increased CYP3A copy number (via amplification or increased chromosome 7q) would be expected to show reduced cytotoxicity to some chemotherapeutic drugs and potentially an increase in the outgrowth of drug resistant tumors.

摘要

最近两项针对整个人类基因组拷贝数变异的筛查发现,每人有12.4个基因拷贝数变异,其中2.5%的个体在7q21.1至7q22.1区域存在基因增加,该区域是CYP3A4的染色体定位。CYP3A4参与了约50%的所有药物的代谢,包括许多癌症化疗药物。在来自143个个体的DNA中测定了CYP3A4基因拷贝数,这些个体包括正常人肝脏、原发性和继发性肝肿瘤、人肝细胞系以及代表八个不同种族群体的永生化细胞系。除了一个样本(一种原发性人肝癌细胞系TONG/HCC)外,所有样本中的CYP3A4基因拷贝数均正常。TONG/HCC DNA的Southern印迹显示CYP3A增加了约10倍,同时CYP3A mRNA表达和催化活性相应增加。TONG/HCC的荧光原位杂交显示7号染色体q21区域的CYP3A4基因有特异性扩增,但在CYP3A4上游11.9 Mb处定位的MDR1基因没有扩增。通过比较基因组杂交对DNA拷贝数进行的高分辨率分析证实了7q21.3 - 7q22区域的扩增。扩增子跨度为1.7 Mb,包含30个已知基因,包括整个CYP3A基因座。为了确定CYP3A4表达是否影响化疗毒性,用表达CYP3A4和P450还原酶的腺病毒转导LLC - PK1细胞。CYP3A4赋予了对紫杉醇、长春碱和拓扑替康的抗性。这些研究表明,CYP3A4拷贝数差异对CYP3A4表达的正常变异没有影响。预计CYP3A拷贝数增加的肿瘤(通过扩增或7号染色体q增加)对某些化疗药物的细胞毒性会降低,并且可能导致耐药肿瘤的生长增加。

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