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首页> 外文期刊>Nucleic acids research >Structural basis for preferential binding of human TCF4 to DNA containing 5-carboxylcytosine
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Structural basis for preferential binding of human TCF4 to DNA containing 5-carboxylcytosine

机译:人TCF4与包含5-羧基胞嘧啶的DNA优先结合的结构基础

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The psychiatric risk-associated transcription factor 4 (TCF4) is linked to schizophrenia. Rare TCF4 coding variants are found in individuals with Pitt-Hopkins syndrome—an intellectual disability and autism spectrum disorder. TCF4 contains a C-terminal basic-helix-loop-helix (bHLH) DNA binding domain which recognizes the enhancer-box (E-box) element 5′-CANNTG-3′ (where N = any nucleotide). A subset of the TCF4-occupancy sites have the expanded consensus binding specificity 5′-C(A/G)-CANNTG-3′, with an added outer Cp(A/G) dinucleotide; for example in the promoter for CNIH3, a gene involved in opioid dependence. In mammalian genomes, particularly brain, the CpG and CpA dinucleotides can be methylated at the 5-position of cytosine (5mC), and then may undergo successive oxidations to the 5-hydroxymethyl (5hmC), 5-formyl (5fC), and 5-carboxyl (5caC) forms. We find that, in the context of 5′-0CG-1CA-2CG-3TG-3′(where the numbers indicate successive dinucleotides), modification of the central E-box 2CG has very little effect on TCF4 binding, E-box 1CA modification has a negative influence on binding, while modification of the flanking 0CG, particularly carboxylation, has a strong positive impact on TCF4 binding to DNA. Crystallization of TCF4 in complex with unmodified or 5caC-modified oligonucleotides revealed that the basic region of bHLH domain adopts multiple conformations, including an extended loop going through the DNA minor groove, or the N-terminal portion of a long helix binding in the DNA major groove. The different protein conformations enable arginine 576 (R576) to interact, respectively, with a thymine in the minor groove, a phosphate group of DNA backbone, or 5caC in the major groove. The Pitt-Hopkins syndrome mutations affect five arginine residues in the basic region, two of them (R569 and R576) involved in 5caC recognition. Our analyses indicate, and suggest a structural basis for, the preferential recognition of 5caC by a transcription factor centrally important in brain development.
机译:精神病风险相关转录因子4(TCF4)与精神分裂症有关。在患有智力障碍和自闭症谱系障碍的皮特-霍普金斯综合征患者中发现了罕见的TCF4编码变体。 TCF4包含识别增强子框(E-box)元件5'-CANNTG-3'(其中N =任何核苷酸)的C端碱性螺旋-环-螺旋(bHLH)DNA结合结构域。 TCF4占据位点的一个子集具有扩展的共有结合特异性5'-C(A / G)-CANNTG-3',并带有外部Cp(A / G)二核苷酸;例如在CNIH3的启动子中,该基因涉及阿片类药物依赖性。在哺乳动物基因组中,特别是在大脑中,CpG和CpA二核苷酸可以在胞嘧啶(5mC)的5位甲基化,然后可以连续氧化为5-羟甲基(5hmC),5-甲酰基(5fC)和5 -羧基(5caC)形式。我们发现,在5'-0CG-1CA-2CG-3TG-3'(其中数字表示连续的二核苷酸)的背景下,中央E-box 2CG的修饰对TCF4结合的影响很小,E-box 1CA修饰对结合具有负面影响,而侧翼0CG的修饰(尤其是羧化)对TCF4与DNA的结合具有强烈的正面影响。与未修饰的或5caC修饰的寡核苷酸复合的TCF4的结晶显示bHLH结构域的基本区域采用多种构象,包括穿过DNA小沟的延伸环,或DNA大分子中长螺旋结合的N端部分槽。不同的蛋白质构象可使精氨酸576(R576)分别与小沟中的胸腺嘧啶,DNA主链的磷酸基团或大沟中的5caC相互作用。 Pitt-Hopkins综合征突变影响基本区域中的五个精氨酸残基,其中两个(R569和R576)参与5caC识别。我们的分析表明,并通过结构上重要的转录因子优先识别5caC的结构基础。

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