首页> 外文期刊>Mutation Research - Genetic Toxicology and Environmental Mutagenesis >Whole genome and normalized mRNA sequencing reveal genetic status of TK6, WTK1, and NH32 human B-lymphoblastoid cell lines
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Whole genome and normalized mRNA sequencing reveal genetic status of TK6, WTK1, and NH32 human B-lymphoblastoid cell lines

机译:全基因组和标准化的mRNA测序揭示了TK6,WTK1和NH32人类B淋巴母细胞系的遗传状态

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摘要

Closely related TK6, WTK1, and NH32 human B-lymphoblastoid cell lines differ in their p53 functional status. These lines are used frequently in genotoxicity studies and in studies aimed at understanding the role of p53 in DNA repair. Despite their routine use, little is known about the genetic status of these cells. To provide insight into their genetic composition, we sequenced and analyzed the entire genome of TK6 cells, as well as the normalized transcriptomes of TK6, WTK1, and NH32 cells. Whole genome sequencing (WGS) identified 21,561 genes and 5.17 x 10(6) small variants. Within the small variants, 50.54% were naturally occurring single nucleotide polymorphisms (SNPs) and 49.46% were mutations. The mutations were comprised of 92.97% single base-pair substitutions and 7.03% insertions or deletions (indels). The number of predicted genes, SNPs, and small mutations are similar to frequencies observed in the human population in general. Normalized mRNA-seq analysis identified the expression of transcripts bearing SNPs or mutations for TK6, WTK1, and NH32 as 2.88%, 2.04%, and 1.71%, respectively, and several of the variant transcripts identified appear to have important implications in genetic toxicology. These include a single base deletion mutation in the ferritin heavy chain gene (FTH1) resulting in a frame shift and protein truncation in TK6 that impairs iron metabolism. SNPs in the thiopurine S-methyltransferase (TPMT) gene (TPMT*3A SNP), and in the xenobiotic metabolizing enzyme, NADPH quinine oxidoreductase 1 (NQO1) gene (NQO1*2 SNP), are both associated with decreased enzyme activity. The clinically relevant TPMT*3A and NQO1*2 SNPs can make these cell lines useful in pharmacogenetic studies aimed at improving or tailoring drug treatment regimens that minimize toxicity and enhance efficacy. Published by Elsevier B.V.
机译:密切相关的TK6,WTK1和NH32人B淋巴母细胞系在p53功能状态方面有所不同。这些系在遗传毒性研究和旨在了解p53在DNA修复中的作用的研究中经常使用。尽管常规使用它们,但对这些细胞的遗传状态知之甚少。为了深入了解其遗传组成,我们对TK6细胞的整个基因组以及TK6,WTK1和NH32细胞的标准化转录组进行了测序和分析。全基因组测序(WGS)确定了21,561个基因和5.17 x 10(6)个小变体。在这些小变异中,有50.54%是自然发生的单核苷酸多态性(SNP),有49.46%是突变。突变由92.97%的单碱基对取代和7.03%的插入或缺失(indels)组成。预测基因,SNP和小突变的数量与一般人群中观察到的频率相似。标准化的mRNA-seq分析确定了带有SNP或TK6,WTK1和NH32突变的转录本的表达分别为2.88%,2.04%和1.71%,并且鉴定出的一些变异转录本似乎对遗传毒理学具有重要意义。这些包括铁蛋白重链基因(FTH1)中的单个碱基缺失突变,导致TK6中的移码和蛋白截短,从而损害铁的代谢。硫嘌呤S-甲基转移酶(TPMT)基因(TPMT * 3A SNP)和异种生物代谢酶NADPH奎宁氧化还原酶1(NQO1)基因(NQO1 * 2 SNP)中的SNP均与酶活性降低有关。临床相关的TPMT * 3A和NQO1 * 2 SNP可以使这些细胞系在药物遗传学研究中有用,这些研究旨在改善或调整药物治疗方案,以最大程度地降低毒性并增强功效。由Elsevier B.V.发布

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