Formation of ribonucleotides in DNA modified by oxidative damage in vitro and in vivo. Characterization by 32P-postlabeling

Kurt Randerath , Ranjani Reddy , Tracy F. Danna , William P. Watson , Anthony E. Crane , Erika Randerath
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引用次数: 35

Abstract

Oxygen free radicals generated by the interaction of Fe2+ and H2O2 (Fenton reaction) are capable of reacting with DNA bases, which may induce premutagenic and precarcinogenic lesions. Products formed in DNA by such reactions have been characterized as hydroxylated derivatives of cytosine, thymine, adenine, and guanine and imidazole ring-opened derivatives of adenine and guanine. As shown here by 32P-postlabeling, incubation of DNA under Fenton reaction conditions gave rise to additional oxidation products in DNA that were characterized as putative ribonucleosides by enzymatic hydrolysis of the oxidized DNA, 32P-postlabeling, and co-chromatography in multiple systems with authentic markers. Formation of these products in DNA was enhanced by the presence of L-ascorbic acid in the reaction mixtures and their total amounts were similar to those of the major DNA oxidation product, 8-hydroxy-2′-deoxyguanosine. The ribonucleoside guanosine was also formed in kidney DNA of male rats treated with ferric nitrilotriacetate, a renal carcinogen. It is postulated that ribonucleotides alter conformation and function of DNA and thus their presence in DNA may lead to adverse health effects.

体外和体内氧化损伤修饰DNA中核糖核苷酸的形成。32p后标记表征
Fe2+与H2O2相互作用产生的氧自由基(Fenton反应)能够与DNA碱基发生反应,可能诱发致突变前和致癌前病变。这种反应在DNA中形成的产物被描述为胞嘧啶、胸腺嘧啶、腺嘌呤和鸟嘌呤的羟基化衍生物,以及腺嘌呤和鸟嘌呤的咪唑开环衍生物。如32p后标记所示,在芬顿反应条件下,DNA孵育会产生额外的氧化产物,通过酶解氧化DNA、32p后标记和在具有真实标记的多个系统中共层析,这些氧化产物被表征为假定的核糖核苷。反应混合物中l -抗坏血酸的存在促进了这些产物在DNA中的形成,它们的总量与主要的DNA氧化产物8-羟基-2 ' -脱氧鸟苷的总量相似。核糖核苷鸟苷也在雄性大鼠的肾脏DNA中形成,这是一种肾致癌物硝酸三乙酸铁。据推测,核糖核苷酸改变了DNA的构象和功能,因此它们在DNA中的存在可能导致不利的健康影响。
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