Lei Lin, Bo Wang, Xinxin Zhang, Changmi Deng, Chunlei Zhou, Jinhong Zhu, Haiyan Wu, Jing He
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We used the R2 platform and Sangerbox tool to analyze the relationship between gene expression and neuroblastoma risk and prognosis through non-parametric testing and Kaplan–Meier analysis, respectively. We found the <i>TET2</i> gene polymorphisms (rs10007915 G > C and rs7670522 A > C) and the combined 2–5 risk genotypes can significantly increase neuroblastoma risk. Stratification analysis showed that these significant associations were more prominent in certain subgroups. <i>TET2</i> rs10007915 G > C and rs7670522 A > C are significantly associated with reduced expression of TET2 mRNA. Moreover, lower expression of <i>TET2</i> gene is associated with high risk, <i>MYCN</i> amplification, and poor prognosis of neuroblastoma. The rs10007915 G > C and rs7670522 A > C are significantly related to the increased expression of inorganic pyrophosphatase 2 mRNA, and higher expression of <i>PPA2</i> gene is associated with high risk, <i>MYCN</i> amplification, and poor prognosis of neuroblastomas. 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Stratification analysis showed that these significant associations were more prominent in certain subgroups. <i>TET2</i> rs10007915 G > C and rs7670522 A > C are significantly associated with reduced expression of TET2 mRNA. Moreover, lower expression of <i>TET2</i> gene is associated with high risk, <i>MYCN</i> amplification, and poor prognosis of neuroblastoma. The rs10007915 G > C and rs7670522 A > C are significantly related to the increased expression of inorganic pyrophosphatase 2 mRNA, and higher expression of <i>PPA2</i> gene is associated with high risk, <i>MYCN</i> amplification, and poor prognosis of neuroblastomas. 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引用次数: 0
摘要
5-甲基胞嘧啶(m5C)是rna中的关键化学修饰。作为m5C中的一种去甲基化酶,TET2已被证明是一种肿瘤抑制酶。然而,TET2基因多态性对神经母细胞瘤的影响尚未阐明。采用TaqMan方法对402例神经母细胞瘤患者和473例对照组进行TET2基因多态性分型。采用多因素logistic回归分析确定TET2基因多态性对神经母细胞瘤易感性的影响。采用基因型-组织表达数据库,探讨TET2基因多态性对宿主及邻近基因表达的影响。我们采用R2平台和Sangerbox工具,分别通过非参数检验和Kaplan-Meier分析,分析基因表达与神经母细胞瘤风险和预后的关系。我们发现TET2基因多态性(rs10007915 G > C和rs7670522 A > C)以及2-5个风险基因型的联合可显著增加神经母细胞瘤的风险。分层分析显示,这些显著关联在某些亚组中更为突出。TET2 rs10007915 G > C和rs7670522 A > C与TET2 mRNA表达降低显著相关。此外,TET2基因的低表达与神经母细胞瘤的高风险、MYCN扩增和预后不良相关。rs10007915 G > C和rs7670522 A > C与无机焦磷酸酶2 mRNA表达升高显著相关,而PPA2基因的高表达与神经母细胞瘤的高风险、MYCN扩增及预后不良相关。综上所述,TET2 rs10007915 G > C和rs7670522 A > C显著与神经母细胞瘤易感性相关,其潜在机制有待进一步研究。
Functional TET2 gene polymorphisms increase the risk of neuroblastoma in Chinese children
The 5-methylcytosine (m5C) is the key chemical modification in RNAs. As one of the demethylases in m5C, TET2 has been shown as a tumor suppressor. However, the impact of TET2 gene polymorphisms on neuroblastoma has not been elucidated. 402 neuroblastoma patients and 473 controls were genotyped for TET2 gene polymorphisms using the TaqMan method. The impact of TET2 gene polymorphisms on neuroblastoma susceptibility was determined using multivariate logistic regression analysis. We also adopted genotype-tissue expression database to explore the impact of TET2 gene polymorphisms on the expression of host and nearby genes. We used the R2 platform and Sangerbox tool to analyze the relationship between gene expression and neuroblastoma risk and prognosis through non-parametric testing and Kaplan–Meier analysis, respectively. We found the TET2 gene polymorphisms (rs10007915 G > C and rs7670522 A > C) and the combined 2–5 risk genotypes can significantly increase neuroblastoma risk. Stratification analysis showed that these significant associations were more prominent in certain subgroups. TET2 rs10007915 G > C and rs7670522 A > C are significantly associated with reduced expression of TET2 mRNA. Moreover, lower expression of TET2 gene is associated with high risk, MYCN amplification, and poor prognosis of neuroblastoma. The rs10007915 G > C and rs7670522 A > C are significantly related to the increased expression of inorganic pyrophosphatase 2 mRNA, and higher expression of PPA2 gene is associated with high risk, MYCN amplification, and poor prognosis of neuroblastomas. In summary, TET2 rs10007915 G > C and rs7670522 A > C significantly confer neuroblastoma susceptibility, and further research is needed to investigate the underlying mechanisms.
期刊介绍:
IUBMB Life is the flagship journal of the International Union of Biochemistry and Molecular Biology and is devoted to the rapid publication of the most novel and significant original research articles, reviews, and hypotheses in the broadly defined fields of biochemistry, molecular biology, cell biology, and molecular medicine.