Institute of Physics, University of Lübeck, Ratzeburger Allee 160, 23538 Lübeck, Germany.
Analyst. 2012 Mar 7;137(5):1160-7. doi: 10.1039/c2an15879e. Epub 2012 Jan 23.
The exonucleolytic degradation of high-density labeled DNA by exonuclease III was monitored using two-color fluorescence correlation spectroscopy (FCS). One strand of the double stranded template DNA was labeled on either one or two base types and additionally at one end via a 5' Cy5 tagged primer. Exonucleolytic degradation was followed via the diffusion time, the brightness of the remaining DNA as well as the concentration of released labeled bases. We found a hydrolyzation rate of about 11 to 17 nucleotides per minute per enzyme (nt/min/enzyme) for high-density labeled DNA, which is by a factor of about 4 slower than for unlabeled DNA. The exonucleolytic degradation of a 488 base pair long double stranded DNA resulted in a short double stranded DNA segment of 112 ± 40 base pairs (bp) length with two single-stranded tails.
采用双色荧光相关光谱(FCS)监测外切核酸酶 III 对高密标记 DNA 的外切核酸降解作用。双链模板 DNA 的一条链在一个或两个碱基类型以及 5'端通过 Cy5 标记的引物上进行标记。通过扩散时间、剩余 DNA 的亮度以及释放的标记碱基的浓度来跟踪外切核酸降解。我们发现高密标记 DNA 的水解速率约为每分钟每个酶 11 到 17 个核苷酸(nt/min/酶),比未标记 DNA 慢约 4 倍。488 个碱基对长的双链 DNA 的外切核酸降解导致 112 ± 40 个碱基对(bp)长度的短双链 DNA 片段,带有两条单链尾巴。