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首页> 外文期刊>Biochemistry >Differential Stabilities and Sequence-Dependent Base Pair Opening Dynamics of Watson-Crick Base Pairs with 5-Hydroxymethylcytosine, 5-Formylcytosine, or 5-Carboxylcytosine
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Differential Stabilities and Sequence-Dependent Base Pair Opening Dynamics of Watson-Crick Base Pairs with 5-Hydroxymethylcytosine, 5-Formylcytosine, or 5-Carboxylcytosine

机译:具有5-羟甲基胞嘧啶,5-甲酰基胞嘧啶或5-羧甲基胞嘧啶的Watson-Crick碱基对的差分稳定性和依赖于序列的碱基对开放动力学

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5-Hydroxymethylcytosine (5hmC), 5-formylcytosine (5fC), and 5-carboxylcytosine (5caC) form during active demethylation of 5-methylcytosine (5mC) and are implicated in epigenetic regulation of the genome. They are differentially processed by thymine DNA glycosylase (TDG), an enzyme involved in active demethylation of 5mC. Three modified Dickerson-Drew dodecamer (DDD) sequences, amenable to crystallographic and spectroscopic analyses and containing the 5'-CG-3' sequence associated with genomic cytosine methylation, containing 5hmC, 5fC, or 5caC placed site-specifically into the 5'-T(8)X(9)G(10)-3' sequence of the DDD, were compared. The presence of 5caC at the X(9) base increased the stability of the DDD, whereas 5hmC or 5fC did not. Both 5hmC and 5fC increased imino proton exchange rates and calculated rate constants for base pair opening at the neighboring base pair A(5):T(8), whereas 5caC did not. At the oxidized base pair G(4):X(9), 5fC exhibited an increase in the imino proton exchange rate and the calculated kop. In all cases, minimal effects to imino proton exchange rates occurred at the neighboring base pair C(3):G(10). No evidence was observed for imino tautomerization, accompanied by wobble base pairing, for 5hmC, 5fC, or 5caC when positioned at base pair G(4):X(9); each favored Watson-Crick base pairing. However, both 5fC and 5caC exhibited intranucleobase hydrogen bonding between their formyl or carboxyl oxygens, respectively, and the adjacent cytosine N(4) exocyclic amines. The lesion-specific differences observed in the DDD may be implicated in recognition of 5hmC, 5fC, or 5caC in DNA by TDG. However, they do not correlate with differential excision of 5hmC, 5fC, or 5caC by TDG, which may be mediated by differences in transition states of the enzyme-bound complexes.
机译:5-羟甲基胞嘧啶(5hmC),5-甲酰基胞嘧啶(5fC)和5-羧基胞嘧啶(5caC)在5-甲基胞嘧啶(5mC)主动去甲基化过程中形成,并与基因组的表观遗传调控有关。它们由胸腺嘧啶脱氧核糖核酸糖基化酶(TDG)进行差异处理,该酶参与5mC的主动脱甲基作用。 3个经过修饰的Dickerson-Drew dodecamer(DDD)序列,适合晶体学和光谱分析,并包含与基因组胞嘧啶甲基化相关的5'-CG-3'序列,其中含有5hmC,5fC或5caC的位点特异性地置于5'-比较了DDD的T(8)X(9)G(10)-3'序列。 X(9)碱基处5caC的存在增加了DDD的稳定性,而5hmC或5fC则没有。 5hmC和5fC都提高了亚氨基质子交换速率,并提高了在相邻碱基对A(5):T(8)处碱基对开放的速率常数,而5caC却没有。在氧化的碱基对G(4):X(9)上,5fC表现出亚氨基质子交换速率和计算的kop的增加。在所有情况下,对亚氨基质子汇率的影响都在邻近的碱基对C(3):G(10)处发生。当放置在碱基对G(4):X(9)上时,没有观察到亚氨基互变异构的证据,伴随有摆动碱基配对的5hmC,5fC或5caC。每个人都喜欢沃森-克里克碱基配对。但是,5fC和5caC分别在其甲酰基或羧基氧与相邻的胞嘧啶N(4)外环胺之间显示出核内氢键。在DDD中观察到的病变特异性差异可能与TDG识别DNA中的5hmC,5fC或5caC有关。但是,它们与TDG差异切除5hmC,5fC或5caC无关,这可能是由于酶结合复合物的过渡态不同所介导的。

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