Kurita Hirofumi, Torii Ken, Yasuda Hachiro, Takashima Kazunori, Katsura Shinji, Mizuno Akira
Department of Ecological Engineering, Toyohashi University of Technology, Aichi, 441-8580, Japan.
J Fluoresc. 2009 Jan;19(1):33-40. doi: 10.1007/s10895-008-0376-4. Epub 2008 Jun 17.
Single-molecule studies have revealed molecular behaviors usually hidden in the ensemble and time averaging of bulk experiments. Single-molecule measurement that can control physical form of individual DNA molecules is a powerful method to obtain new knowledge about correlation between DNA-tension and enzyme activity. Here we study the effect of physical form of DNA on exonucleaseIII (ExoIII) reaction. ExoIII has a double-stranded DNA specific 3'-->5' exonuclease activity and the digestion is distributive. We observed the ExoIII digestion of individual stretched DNA molecules from the free ends. The sequentially captured photographs demonstrated that the digested DNA molecule linearly shortened with the reaction time. We also carried out the single-molecule observation under random coiled form by pausing the buffer flow. The digestion rates obtained from both single-molecule experiments showed that the digestion rate under the stretched condition was two times higher than the random coiled condition. The correlation between physical form of DNA and digestion rate of ExoIII was clearly demonstrated by single-molecule observations.
单分子研究揭示了通常隐藏在大量实验的总体和时间平均中的分子行为。能够控制单个DNA分子物理形态的单分子测量是获取有关DNA张力与酶活性之间相关性新知识的有力方法。在这里,我们研究了DNA物理形态对外切核酸酶III(ExoIII)反应的影响。ExoIII具有双链DNA特异性的3'→5'外切核酸酶活性,且消化是分布性的。我们从自由末端观察了单个拉伸DNA分子的ExoIII消化过程。顺序拍摄的照片表明,消化后的DNA分子随反应时间线性缩短。我们还通过暂停缓冲液流动在随机卷曲形态下进行了单分子观察。从两个单分子实验获得的消化速率表明,拉伸条件下的消化速率比随机卷曲条件下高两倍。单分子观察清楚地证明了DNA物理形态与ExoIII消化速率之间的相关性。