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首页> 外文期刊>Molecular Nutrition and Food Research >Absence of 2'-deoxyguanosine-carbon 8-bound ochratoxin A adduct in rat kidney DNA monitored by isotope dilution LC-MS/MS.
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Absence of 2'-deoxyguanosine-carbon 8-bound ochratoxin A adduct in rat kidney DNA monitored by isotope dilution LC-MS/MS.

机译:通过同位素稀释LC-MS / MS监测大鼠肾脏DNA中2'-脱氧鸟苷-碳8结合的och曲毒素A加合物的缺失。

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The contribution of DNA adduct formation in the carcinogenic action of the mycotoxin ochratoxin A (OTA) has been subject to much debate. Recently, a carbon-bonded ochratoxin A-2'-deoxyguanosine adduct (dGuoOTA) formed by photochemical reaction in vitro has been shown by 32P-postlabeling/TLC to comigrate with a spot detected in DNA isolated from rat and pig kidney following exposure to OTA. Considering the large body of evidence arguing against covalent DNA binding of OTA and the poor resolution and specificity of postlabeling analysis, we developed a stable isotope dilution LC-MS/MS method to analyze dGuoOTA in kidney DNA isolated from rats treated with OTA. dGuoOTA and nitrogen-15-labeled dGuoOTA (15N(5)-dGuoOTA) were prepared by photoirradiation of OTA in the presence of dGuo or nitrogen-15-labeled dGuo. Conditions for DNA hydrolysis were optimized using a synthetic oligonucleotide containing dGuoOTA to ensure complete release of dGuoOTA. The LOD of the method (S/N > 3) was 10 fmol dGuoOTA on-column. However, dGuoOTA was not detected in DNA samples isolated from male F344 rats treated with OTA for up to 90 days at doses known to cause renal tumor formation. Detection limits, calculated for each individual sample based on the absolute LOD and the amount of DNA injected, were as low as 3.5 dGuoOTA/10(9) nucleotides. These data are consistent with previous results showing lack of DNA adduct formation by OTA and demonstrate that dGuoOTA is not formed in biologically relevant amounts under physiological conditions in vivo.
机译:DNA加合物的形成在霉菌毒素to曲霉毒素A(OTA)致癌作用中的作用已引起很多争论。最近,通过32P-postlabeling / TLC显示,通过光化学反应在体外形成的碳键连接的ra曲毒素A-2'-脱氧鸟苷加合物(dGuoOTA)与暴露于OTA后从大鼠和猪肾脏分离的DNA中检测到的斑点相对应。 。考虑到有大量证据反对OTA的共价DNA结合以及标记后分析的较差的分辨率和特异性,我们开发了一种稳定的同位素稀释LC-MS / MS方法来分析从OTA处理的大鼠分离的肾脏DNA中的dGuoOTA。 dGuoOTA和氮15标记的dGuoOTA(15N(5)-dGuoOTA)是通过在dGuo或氮15标记的dGuo的存在下进行OTA光辐射制备的。使用含有dGuoOTA的合成寡核苷酸优化DNA水解条件,以确保dGuoOTA完全释放。该方法的检测限(S / N> 3)为10 fmol dGuoOTA柱上。但是,在长达90天的已知导致肾肿瘤形成的剂量下,从接受OTA处理的雄性F344大鼠分离的DNA样品中未检测到dGuoOTA。根据绝对LOD和注入的DNA量计算出的每个样品的检测限低至3.5 dGuoOTA / 10(9)个核苷酸。这些数据与以前的结果一致,该结果表明OTA缺乏形成DNA加合物的过程,并证明dGuoOTA在体内生理条件下未形成生物学上相关的量。

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