Hang Bo, Downing Gary, Guliaev Anton B, Singer B
Donner Laboratory, Life Sciences Division, Lawrence Berkeley National Laboratory, University of California, Berkeley, California 94720, USA.
Biochemistry. 2002 Feb 19;41(7):2158-65. doi: 10.1021/bi011542b.
Glycidaldehyde is an industrial chemical which has been shown to be genotoxic in in vitro experiments and carcinogenic in rodent studies. It is a bifunctional alkylating agent capable of reacting with DNA to form exocyclic hydroxymethyl-substituted ethenobases. In this work, 8-(hydroxymethyl)-3,N4-etheno-2'-deoxycytidine (8-HM-epsilondC), a potential nucleoside derivative of glycidaldehyde, was synthesized using phosphoramidite chemistry and site-specifically incorporated into a defined 25-mer oligodeoxynucleotide. The 8-HM-epsilonC adduct is structurally related to 3,N4-ethenocytosine (epsilonC), a product of reaction with vinyl chloride or through lipid peroxidation. In Escherichia coli, epsilonC has been shown previously to be a primary substrate for the mismatch uracil-DNA glycosylase (Mug). In this study, we report that the same glycosylase also acts on 8-HM-epsilonC in an oligonucleotide duplex. The enzyme binds to the 8-HM-epsilonC-oligonucleotide to a similar extent as the epsilonC-oligonucleotide. The Mug excision activity toward 8-HM-epsilonC is approximately 2.5-fold lower than that toward the epsilonC substrate. Both activities can be stimulated up to approximately 2-fold higher by the addition of E. coli endonuclease IV. These two adducts, when mispaired with normal bases, were all excised from DNA by Mug with similar efficiencies. Structural studies using molecular simulations showed similar adjustment and hydrogen bonding pattern for both 8-HM-epsilonCG and epsilonCG pairs in oligomer duplexes. We believe that these findings may have biological and structural implications in defining the role of 8-HM-epsilonC in glycosylase recognition/repair.
缩水甘油醛是一种工业化学品,体外实验表明其具有基因毒性,啮齿动物研究表明其具有致癌性。它是一种双功能烷基化剂,能够与DNA反应形成环外羟甲基取代的乙烯基碱基。在本研究中,使用亚磷酰胺化学合成了缩水甘油醛的一种潜在核苷衍生物8-(羟甲基)-3,N4-乙烯基-2'-脱氧胞苷(8-HM-εdC),并将其位点特异性地掺入到一个确定的25聚体寡脱氧核苷酸中。8-HM-εC加合物在结构上与3,N4-乙烯基胞嘧啶(εC)相关,εC是与氯乙烯反应或通过脂质过氧化反应的产物。在大肠杆菌中,εC先前已被证明是错配尿嘧啶-DNA糖基化酶(Mug)的主要底物。在本研究中,我们报道了同一种糖基化酶也作用于寡核苷酸双链体中的8-HM-εC。该酶与8-HM-εC-寡核苷酸的结合程度与εC-寡核苷酸相似。Mug对8-HM-εC的切除活性比对εC底物的切除活性低约2.5倍。通过添加大肠杆菌核酸内切酶IV,两种活性均可被刺激提高约2倍。当这两种加合物与正常碱基错配时,Mug都能以相似的效率从DNA中切除它们。使用分子模拟的结构研究表明,寡聚物双链体中8-HM-εCG和εCG对具有相似的构象调整和氢键模式。我们认为,这些发现可能对确定8-HM-εC在糖基化酶识别/修复中的作用具有生物学和结构意义。