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结合双胞胎队列中的 CDKN1A 基因表达和全基因组 SNPs 深入了解个体放射敏感性的遗传性。

Combining CDKN1A gene expression and genome-wide SNPs in a twin cohort to gain insight into the heritability of individual radiosensitivity.

机构信息

Data Mining Division, Faculty of Automatic Control, Electronic and Computer Science, Silesian University of Technology, Akademicka 16, 44-100, Gliwice, Poland.

Cellular Biology Group, Radiation Effects Department, Centre for Radiation, Chemical and Environmental Hazards, Public Health England, Chilton, Didcot, OX11 0RQ, UK.

出版信息

Funct Integr Genomics. 2019 Jul;19(4):575-585. doi: 10.1007/s10142-019-00658-3. Epub 2019 Jan 31.

Abstract

Individual variability in response to radiation exposure is recognised and has often been reported as important in treatment planning. Despite many efforts to identify biomarkers allowing the identification of radiation sensitive patients, it is not yet possible to distinguish them with certainty before the beginning of the radiotherapy treatment. A comprehensive analysis of genome-wide single-nucleotide polymorphisms (SNPs) and a transcriptional response to ionising radiation exposure in twins have the potential to identify such an individual. In the present work, we investigated SNP profile and CDKN1A gene expression in blood T lymphocytes from 130 healthy Caucasians with a complex level of individual kinship (unrelated, mono- or dizygotic twins). It was found that genetic variation accounts for 66% (95% CI 37-82%) of CDKN1A transcriptional response to radiation exposure. We developed a novel integrative multi-kinship strategy allowing investigating the role of genome-wide polymorphisms in transcriptomic radiation response, and it revealed that rs205543 (ETV6 gene), rs2287505 and rs1263612 (KLF7 gene) are significantly associated with CDKN1A expression level. The functional analysis revealed that rs6974232 (RPA3 gene), involved in mismatch repair (p value = 9.68e-04) as well as in RNA repair (p value = 1.4e-03) might have an important role in that process. Two missense polymorphisms with possible deleterious effect in humans were identified: rs1133833 (AKIP1 gene) and rs17362588 (CCDC141 gene). In summary, the data presented here support the validity of this novel integrative data analysis strategy to provide insights into the identification of SNPs potentially influencing radiation sensitivity. Further investigations in radiation response research at the genomic level should be therefore continued to confirm these findings.

摘要

个体对辐射暴露的反应存在差异,这一点已得到认可,并经常在治疗计划中被报道为重要因素。尽管已经做出了许多努力来识别允许识别辐射敏感患者的生物标志物,但在放射治疗开始之前,仍然无法确定他们。对全基因组单核苷酸多态性(SNP)和对电离辐射暴露的转录反应进行综合分析,有可能确定这种个体。在本工作中,我们研究了 130 名具有复杂个体亲缘关系(无关、单卵或双卵双胞胎)的健康白种人血液 T 淋巴细胞中的 SNP 谱和 CDKN1A 基因表达。结果发现,遗传变异占 CDKN1A 对辐射暴露转录反应的 66%(95%CI 37-82%)。我们开发了一种新的综合多亲缘关系策略,用于研究全基因组多态性在转录组辐射反应中的作用,结果表明 rs205543(ETV6 基因)、rs2287505 和 rs1263612(KLF7 基因)与 CDKN1A 表达水平显著相关。功能分析表明,rs6974232(RPA3 基因),参与错配修复(p 值=9.68e-04)和 RNA 修复(p 值=1.4e-03),可能在该过程中具有重要作用。鉴定出两个可能对人类具有有害影响的错义多态性:rs1133833(AKIP1 基因)和 rs17362588(CCDC141 基因)。总之,本文提供的资料支持这种新的综合数据分析策略的有效性,为识别可能影响辐射敏感性的 SNP 提供了新的见解。因此,应继续在基因组水平上进行放射反应研究,以确认这些发现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/84f1/6570669/12a4af03bb9f/10142_2019_658_Fig1_HTML.jpg

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