Nanobiotechnology Laboratory, National Food Research Institute, National Agriculture and Food Research Organization, Ibaraki 305-8642, Japan.
Anal Biochem. 2010 Jun 15;401(2):242-9. doi: 10.1016/j.ab.2010.03.011. Epub 2010 Mar 15.
Prevailing conventional microbial detection methods depend largely on microbial cultivation in selective media that requires several days. Polymerase chain reaction (PCR)-based methods, including quantitative reverse transcription PCR, are also rapid and useful methods for identification of target microbes, although for practical use they still suffer from disadvantages such as contamination problems and cost. Here we demonstrate that RNA-primed rolling circle amplification (RPRCA) using phi29 DNA polymerase, a precircularized probe, and SYBR Green II achieved real-time detection of specific messenger RNA (mRNA) from living microbes. The precircularized DNA probe was prepared by intramolecular ligation using CircLigase and treated by exonuclease I to eliminate uncircularized oligonucleotide, thereby significantly reducing potential noise by nonspecific amplified DNA by-products that affect successive RPRCA. When in vitro transcribed green fluorescent protein (GFP) mRNA was used as a primer, RPRCA could specifically detect at least 1 fmol of this mRNA in the presence of a precircularized probe that had a sequence complementary to the 3' terminus of mRNA without reverse transcription. This method could also detect expressed GFP mRNA present in 10 ng of total RNA isolated from Escherichia coli without DNase treatment. These data suggest that RPRCA has the potential to be a direct, rapid, and convenient method for detecting microbial mRNA.
目前常用的微生物检测方法主要依赖于在选择性培养基中进行微生物培养,这需要数天时间。聚合酶链反应(PCR)为基础的方法,包括定量逆转录 PCR,也是鉴定目标微生物的快速而有用的方法,尽管在实际应用中,它们仍然存在污染问题和成本等缺点。在这里,我们证明了 phi29 DNA 聚合酶、预环化探针和 SYBR Green II 的 RNA 引物滚环扩增(RPRCA)可以实时检测来自活微生物的特定信使 RNA(mRNA)。预环化 DNA 探针是通过 CircLigase 的分子内连接制备的,并使用外切核酸酶 I 处理,以消除未环化的寡核苷酸,从而显著减少由非特异性扩增的 DNA 副产物引起的潜在噪声,这些副产物会影响连续的 RPRCA。当体外转录的绿色荧光蛋白(GFP)mRNA 用作引物时,RPRCA 可以在存在与 mRNA 3' 末端互补的预环化探针的情况下,特异性检测至少 1 fmol 的这种 mRNA,而无需逆转录。该方法还可以检测未经 DNase 处理的从大肠杆菌中分离的 10ng 总 RNA 中表达的 GFP mRNA。这些数据表明,RPRCA 有可能成为一种直接、快速和方便的检测微生物 mRNA 的方法。