Abnormal methylation in the NDUFA13 gene promoter of breast cancer cells breaks the cooperative DNA recognition by transcription factors.

Q3 Biochemistry, Genetics and Molecular Biology QRB Discovery Pub Date : 2022-01-01 DOI:10.1017/qrd.2022.21
Johanna Hörberg, Björn Hallbäck, Kevin Moreau, Anna Reymer
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引用次数: 1

Abstract

Selective DNA binding by transcription factors (TFs) is crucial for the correct regulation of DNA transcription. In healthy cells, promoters of active genes are hypomethylated. A single CpG methylation within a TF response element (RE) may change the binding preferences of the protein, thus causing the dysregulation of transcription programs. Here, we investigate a molecular mechanism driving the downregulation of the NDUFA13 gene, due to hypermethylation, which is associated with multiple cancers. Using bioinformatic analyses of breast cancer cell line MCF7, we identify a hypermethylated region containing the binding sites of two TFs dimers, CEBPB and E2F1-DP1, located 130 b.p. from the gene transcription start site. All-atom extended MD simulations of wild type and methylated DNA alone and in complex with either one or both TFs dimers provide mechanistic insights into the cooperative asymmetric binding order of the two dimers; the CEBPB binding should occur first to facilitate the E2F1-DP1-DNA association. The CpG methylation within the E2F1-DP1 RE and the linker decrease the cooperativity effects and renders the E2F1-DP1 binding site less recognizable by the TF dimer. Taken together, the identified CpG methylation site may contribute to the downregulation of the NDUFA13 gene.

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乳腺癌细胞NDUFA13基因启动子甲基化异常破坏了转录因子对DNA的协同识别。
转录因子的选择性DNA结合对DNA转录的正确调控至关重要。在健康细胞中,活性基因的启动子被低甲基化。TF响应元件(RE)内的单个CpG甲基化可能改变蛋白质的结合偏好,从而导致转录程序的失调。在这里,我们研究了驱动NDUFA13基因下调的分子机制,由于高甲基化,这与多种癌症有关。通过对乳腺癌细胞系MCF7的生物信息学分析,我们发现了一个高甲基化区域,该区域包含两个tf二聚体CEBPB和E2F1-DP1的结合位点,位于基因转录起始位点130 bp处。野生型和甲基化DNA单独以及与一种或两种tf二聚体的复合物的全原子扩展MD模拟提供了对两种二聚体合作不对称结合顺序的机制见解;CEBPB结合应该首先发生,以促进E2F1-DP1-DNA的结合。E2F1-DP1 RE和连接体内的CpG甲基化降低了协同效应,使E2F1-DP1结合位点无法被TF二聚体识别。综上所述,鉴定的CpG甲基化位点可能有助于NDUFA13基因的下调。
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来源期刊
QRB Discovery
QRB Discovery Biochemistry, Genetics and Molecular Biology-Biophysics
CiteScore
3.60
自引率
0.00%
发文量
18
审稿时长
12 weeks
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