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利用位点特异性修饰的寡核苷酸测定苯并[a]芘二环氧物-DNA抗血清的立体特异性

Determination of stereospecificity of benzo[a]pyrene diolepoxide-DNA antisera with site-specifically modified oligonucleotides.

作者信息

Hsu T M, Liu T M, Amin S, Geacintov N E, Santella R M

机构信息

Division of Environmental Sciences/Cancer Center, Columbia University, New York, NY 10032, USA.

出版信息

Carcinogenesis. 1995 Sep;16(9):2263-5. doi: 10.1093/carcin/16.9.2263.

Abstract

Antisera developed against benzo[a]pyrene diolepoxide (BPDE)-DNA adducts are sensitive tools for detection of DNA adducts in human samples. All antisera currently used for biomonitoring studies were produced against DNA or guanosine modified with racemic anti-BPDE. Using a non-competitive enzyme-linked immunosorbent assay (ELISA), Venkatachalam and Wani (Carcinogenesis, 15, 565-572, 1994) recently tested polyclonal and monoclonal (5D2) antisera for cross-reactivity against oligonucleotides containing (+)-and (-)-trans-anti-BPDE-N2-guanine or N6-adenine adducts and showed different stereospecificity for the two antisera. Because of the importance of antiserum specificity in human biomonitoring studies, we have tested several monoclonal (Mab 5D11 and 5D2) and polyclonal (Pab #29) antisera developed against racemic anti-BPDE-DNA adducts, and Mab 8E11 developed against anti-BPDE-guanosine adducts. Stereoisomeric anti-BPDE-modified oligonucleotide adducts in the sequence 5'-d(CC-AT-CGCTACC)-3' where G = anti-BPDE-N2-dG with (+)-trans, (-)-trans, (+)-cis and (-)-cis adduct stereochemistry at the C10 position of anti-BPDE were tested by competitive ELISA. Two structurally related 5-methylchrysene diolepoxide adducts with G* = (+)- and (-)-trans-anti-5-MeCDE-N2-dG in the same oligonucleotide were also tested. While Mab5D2 had the highest affinity for the (-)-trans-anti-BPDE-modified oligomer, Mab 5D11 and 8E11 and Pab #29 recognized the (+)-trans-anti-BPDE-modified oligomer better than the (-)-trans-anti-BPDE modified oligomer. Mab 5D11 and Pab #29 recognized racemic anti-BPDE-modified DNA adducts better than trans-anti-BPDE-modified oligonucleotides; however, Mab 8E11 showed similar sensitivity to racemic anti-BPDE-DNA adducts and (+)- and (-)-trans-anti-BPDE-modified oligomers. All antisera exhibited lower reactivities with both 5-MeCDE modified oligomers. Because of their sensitive detection of (+)-trans-anti-BPDE-dG adducts, the primary adduct produced in vivo, Mab 8E11 and 5D11 and Pab #29 are appropriate for measurement of most adducts formed in humans.

摘要

针对苯并[a]芘二氢二醇环氧化物(BPDE)-DNA加合物研制的抗血清是检测人体样本中DNA加合物的灵敏工具。目前用于生物监测研究的所有抗血清都是针对用外消旋反式-BPDE修饰的DNA或鸟苷制备的。Venkatachalam和Wani(《癌变》,15卷,565 - 572页,1994年)最近使用非竞争性酶联免疫吸附测定(ELISA),测试了多克隆和单克隆(5D2)抗血清对含有(+)-和(-)-反式-反式-BPDE-N2-鸟嘌呤或N6-腺嘌呤加合物的寡核苷酸的交叉反应性,结果显示这两种抗血清具有不同的立体特异性。鉴于抗血清特异性在人体生物监测研究中的重要性,我们测试了几种针对外消旋反式-BPDE-DNA加合物研制的单克隆(Mab 5D11和5D2)和多克隆(Pab #29)抗血清,以及针对反式-BPDE-鸟苷加合物研制的Mab 8E11。通过竞争性ELISA测试了序列为5'-d(CC-AT-CGCTACC)-3'的立体异构反式-BPDE修饰的寡核苷酸加合物,其中G = 反式-BPDE-N2-dG,在反式-BPDE的C10位置具有(+)-反式、(-)-反式、(+)-顺式和(-)-顺式加合物立体化学结构。还测试了两种结构相关的5-甲基屈二氢二醇环氧化物加合物,在同一寡核苷酸中G* = (+)-和(-)-反式-反式-5-MeCDE-N2-dG。虽然Mab5D2对(-)-反式-反式-BPDE修饰的寡聚物亲和力最高,但Mab 5D11、8E11和Pab #29对(+)-反式-反式-BPDE修饰的寡聚物的识别能力优于(-)-反式-反式-BPDE修饰的寡聚物。Mab 5D11和Pab #29对外消旋反式-BPDE修饰的DNA加合物的识别能力优于反式-反式-BPDE修饰的寡核苷酸;然而,Mab 8E11对外消旋反式-BPDE-DNA加合物以及(+)-和(-)-反式-反式-BPDE修饰的寡聚物表现出相似的敏感性。所有抗血清对两种5-MeCDE修饰的寡聚物的反应性都较低。由于Mab 8E11、5D11和Pab #29能够灵敏地检测体内产生的主要加合物(+)-反式-反式-BPDE-dG加合物,它们适用于测量人体中形成的大多数加合物。

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