Abe Hiroshi, Kondo Yuko, Jinmei Hiroshi, Abe Naoko, Furukawa Kazuhiro, Uchiyama Atsushi, Tsuneda Satoshi, Aikawa Kyoko, Matsumoto Isamu, Ito Yoshihiro
Nano Medical Engineering Laboratory, Discovery Research Institute, RIKEN, 2-1, Hirosawa, Wako-Shi, Saitama, 351-0198 Japan.
Bioconjug Chem. 2008 Jan;19(1):327-33. doi: 10.1021/bc700244s. Epub 2007 Nov 9.
Enzymatic ligation methods are useful in the diagnostic detection of DNA sequences. Here, we describe the investigation of nonenzymatic phosphorothioate--iodoacetyl DNA chemical ligation as a method for the detection and identification of RNA and DNA. The specificity of ligation on the DNA target is shown to allow the discrimination of a single point mutation with a drop in the ligation yield of up to 16.1-fold. Although enzymatic ligation has very low activity for RNA targets, this reaction is very efficient for RNA targets. The speed of the chemical ligation with an RNA target achieves a 70% yield in 5 s, which is equal to or better than that of ligase-enzyme-mediated ligation with a DNA target. The reaction also exhibits a significant level of signal amplification under thermal cycling in periods as short as 100-120 min, with the RNA or DNA target acting in a catalytic way to ligate multiple pairs of probes.
酶促连接方法在DNA序列的诊断检测中很有用。在此,我们描述了非酶促硫代磷酸酯-碘乙酰基DNA化学连接作为一种检测和鉴定RNA与DNA的方法的研究。结果表明,DNA靶标上连接反应的特异性能够区分单点突变,连接产率下降高达16.1倍。虽然酶促连接对RNA靶标的活性很低,但该化学反应对RNA靶标非常有效。与RNA靶标进行化学连接的速度在5秒内产率达到70%,这与连接酶介导的DNA靶标连接产率相当或更高。在短至100 - 120分钟的热循环过程中,该反应还表现出显著的信号放大,RNA或DNA靶标以催化方式连接多对探针。