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亚甲基四氢叶酸脱氢酶1(MTHFD1)启动子分析与神经管缺陷风险

Analysis of the MTHFD1 promoter and risk of neural tube defects.

作者信息

Carroll Nicola, Pangilinan Faith, Molloy Anne M, Troendle James, Mills James L, Kirke Peadar N, Brody Lawrence C, Scott John M, Parle-McDermott Anne

机构信息

Dublin City University, Ireland.

出版信息

Hum Genet. 2009 Apr;125(3):247-56. doi: 10.1007/s00439-008-0616-3. Epub 2009 Jan 8.

Abstract

Genetic variants in MTHFD1 (5,10-methylenetetrahydrofolate dehydrogenase/5,10-methenyltetrahydrofolate cyclohydrolase/ 10-formyltetrahydrofolate synthetase), an important folate metabolic enzyme, are associated with a number of common diseases, including neural tube defects (NTDs). This study investigates the promoter of the human MTHFD1 gene in a bid to understand how this gene is controlled and regulated. Following a combination of in silico and molecular approaches, we report that MTHFD1 expression is controlled by a TATA-less, Initiator-less promoter and transcription is initiated at multiple start sites over a 126 bp region. We confirmed the presence of three database polymorphisms (dbSNP) by direct sequencing of the upstream region (rs1076991 C > T, rs8010584 G > A, rs4243628 G > T), with a fourth (dbSNP rs746488 A > T) not found to be polymorphic in our population and no novel polymorphisms identified. We demonstrate that a common SNP rs1076991 C > T within the window of transcriptional initiation exerts a significant effect on promoter activity in vitro. We investigated this SNP as a potential risk factor for NTDs in a large homogenous Irish population and determined that it is not an independent risk factor, but, it does increase both case (chi (2) = 11.06, P = 0.001) and maternal (chi (2) = 6.68, P = 0.01) risk when allele frequencies were analysed in combination with the previously identified disease-associated p.R653Q (c.1958 G > A; dbSNP rs2236225) polymorphism. These results provide the first insight into how MTHFD1 is regulated and further emphasise its importance during embryonic development.

摘要

亚甲基四氢叶酸脱氢酶/亚甲基四氢叶酸环化水解酶/10-甲酰四氢叶酸合成酶(MTHFD1)是一种重要的叶酸代谢酶,其基因变异与包括神经管缺陷(NTDs)在内的多种常见疾病相关。本研究对人类MTHFD1基因的启动子进行了研究,以了解该基因是如何被控制和调节的。通过计算机分析和分子方法相结合,我们发现MTHFD1的表达受一个无TATA盒、无起始子的启动子控制,转录在一个126 bp区域内的多个起始位点起始。我们通过对上游区域进行直接测序,确认了三个数据库多态性(dbSNP)(rs1076991 C>T、rs8010584 G>A、rs4243628 G>T),而第四个(dbSNP rs746488 A>T)在我们的人群中未发现多态性,也未鉴定出新的多态性。我们证明,转录起始窗口内的一个常见SNP rs1076991 C>T在体外对启动子活性有显著影响。我们在一个大型同质化爱尔兰人群中研究了这个SNP作为NTDs潜在风险因素的情况,确定它不是一个独立的风险因素,但是,当与先前鉴定的与疾病相关的p.R653Q(c.1958 G>A;dbSNP rs2236225)多态性联合分析等位基因频率时,它确实增加了病例风险(χ²=11.06,P=0.001)和母亲风险(χ²=6.68,P=0.01)。这些结果首次揭示了MTHFD1是如何被调节的,并进一步强调了其在胚胎发育过程中的重要性。

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