Atienzar Franck A, Venier Paola, Jha Awadhesh N, Depledge Michael H
School of Biological Sciences, Plymouth Environmental Research Centre, University of Plymouth, Drake Circus, Plymouth, PL4 8AA, UK.
Mutat Res. 2002 Nov 26;521(1-2):151-63. doi: 10.1016/s1383-5718(02)00216-4.
The random amplified polymorphic DNA (RAPD) assay and related techniques like the arbitrarily primed polymerase chain reaction (AP-PCR) have been shown to detect genotoxin-induced DNA damage and mutations. The changes occurring in RAPD profiles following genotoxic treatments include variation in band intensity as well as gain or loss of bands. However, the interpretation of the molecular events responsible for differences in the RAPD patterns is not an easy task since different DNA alterations can induce similar type of changes. In this study, we evaluated the effects of a number of DNA alterations on the RAPD profiles. Genomic DNA from different species was digested with restriction enzymes, ultrasonicated, treated with benzo[a]pyrene (B[a]P) diol epoxide (BPDE) and the resulting RAPD profiles were evaluated. In comparison to the enzymatic DNA digestions, sonication caused greater changes in the RAPD patterns and induced a dose-related disappearance of the high molecular weight amplicons. A DNA sample substantially modified with BPDE caused very similar changes but amplicons of low molecular weight were also affected. Appearance of new bands and increase in band intensity were also evident in the RAPD profiles generated by the BPDE-modified DNA. Random mutations occurring in mismatch repair-deficient strains did not cause any changes in the banding patterns whereas a single base change in 10-mer primers produced substantial differences. Finally, further research is required to better understand the potential and limitations of the RAPD assay for the detection of DNA damage and mutations.
随机扩增多态性DNA(RAPD)分析及相关技术,如任意引物聚合酶链反应(AP-PCR),已被证明可检测基因毒素诱导的DNA损伤和突变。基因毒性处理后RAPD图谱中出现的变化包括条带强度的变化以及条带的增减。然而,解释导致RAPD模式差异的分子事件并非易事,因为不同的DNA改变可诱导相似类型的变化。在本研究中,我们评估了多种DNA改变对RAPD图谱的影响。用限制性内切酶消化来自不同物种的基因组DNA,超声处理,用苯并[a]芘(B[a]P)二醇环氧化物(BPDE)处理,并对所得的RAPD图谱进行评估。与酶切DNA消化相比,超声处理在RAPD模式中引起了更大的变化,并诱导了高分子量扩增子与剂量相关的消失。用BPDE大量修饰的DNA样本引起了非常相似的变化,但低分子量的扩增子也受到了影响。BPDE修饰的DNA产生的RAPD图谱中也明显出现了新条带和条带强度增加的情况。错配修复缺陷菌株中发生的随机突变未引起条带模式的任何变化,而10聚体引物中的单个碱基变化产生了显著差异。最后,需要进一步研究以更好地理解RAPD分析在检测DNA损伤和突变方面的潜力和局限性。