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rs11466313 功能变体对乳腺癌易感性和 TGFB1 启动子活性的影响。

Effect of functional variant rs11466313 on breast cancer susceptibility and TGFB1 promoter activity.

机构信息

Department of Pathology, Key Laboratory of Carcinogenesis and Translational Research (Ministry of Education), School of Basic Medical Sciences, Third Hospital, Peking University Health Science Center, Beijing, 100191, China.

Breast Center, Peking University School of Oncology, Beijing Cancer Hospital & Institute, Beijing, 100142, China.

出版信息

Breast Cancer Res Treat. 2020 Nov;184(1):237-248. doi: 10.1007/s10549-020-05841-w. Epub 2020 Aug 5.

Abstract

PURPOSE

This study aimed to investigate whether genetic polymorphisms in TGFB1 contribute to breast cancer (BC) susceptibility, and explore the mechanism of action.

METHODS

A total of 7 tagging SNPs (tSNPs) were genotyped in 1161 BC cases and 1337 age-matched controls among Chinese Han population. Bioinformatics analysis was used to predict functional SNP closely linked to tSNPs. Luciferase gene reporter assay was performed to determine the effect of genetic variants on promoter activity. DNA pull-down assay and mass spectrometry were used to identify the differentially binding proteins to genetic variants.

RESULTS

Genotyping analysis showed that rs1800469 (C>T) in the 5' regulatory region of TGFB1 was associated with reduced BC risk. Bioinformatics analysis predicted that rs11466313 (-2389_-2391 Del/AGG) in the 5' regulatory region of TGFB1, was closely linked to tSNP rs1800469 and could be functional. The genotyping of rs11466313 by PCR-SSCP showed that rs11466313 also conferred decreased BC risk. Luciferase assays demonstrated that rs11466313 minor allele reduced over ninefold of promoter activity compared with its major allele (p < 0.001). DNA pull-down assay and mass spectrometry revealed that rs11466313 minor allele lost the binding ability with FAM98B and HSP90B. Knocking down FAM98B but not HSP90B, the enhanced promoter activity driven by TGFB1 rs11466313 major allele was attenuated.

CONCLUSIONS

This study elucidates the impact of functional polymorphism rs11466313 in the regulatory region of TGFB1 on breast cancer susceptibility and gene expression, and could be helpful for future research to determine the value of this TGFB1 variant in the clinical setting.

摘要

目的

本研究旨在探讨转化生长因子β 1(TGFB1)基因多态性是否与乳腺癌(BC)易感性相关,并探讨其作用机制。

方法

在中国汉族人群中,对 1161 例 BC 病例和 1337 例年龄匹配的对照者进行了 7 个标签单核苷酸多态性(tSNP)的基因分型。生物信息学分析用于预测与 tSNP 紧密连锁的功能 SNP。荧光素酶基因报告基因检测用于确定遗传变异对启动子活性的影响。DNA 下拉实验和质谱分析用于鉴定与遗传变异差异结合的蛋白。

结果

基因分型分析显示,TGFB1 5'调控区的 rs1800469(C>T)与 BC 风险降低相关。生物信息学分析预测,TGFB1 5'调控区的 rs11466313(-2389_-2391 Del/AGG)与 tSNP rs1800469 紧密连锁,可能具有功能。PCR-SSCP 基因分型显示 rs11466313 也降低了 BC 风险。荧光素酶检测显示,与主要等位基因相比,rs11466313 次要等位基因的启动子活性降低了 9 倍以上(p<0.001)。DNA 下拉实验和质谱分析表明,rs11466313 次要等位基因丧失了与 FAM98B 和 HSP90B 的结合能力。敲低 FAM98B 而非 HSP90B 后,由 TGFB1 rs11466313 主要等位基因驱动的增强启动子活性减弱。

结论

本研究阐明了 TGFB1 调控区功能多态性 rs11466313 对乳腺癌易感性和基因表达的影响,有助于未来研究确定该 TGFB1 变异在临床环境中的价值。

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