Ames Laboratory - USDOE, Department of Chemistry, Iowa State University, Ames, IA 50011, USA.
Talanta. 2011 Sep 30;85(4):2135-41. doi: 10.1016/j.talanta.2011.07.058. Epub 2011 Jul 23.
The real-time digestion of entrapped single-DNA molecules by λ-exonuclease in nanoporous alumina membranes was observed using an epifluorescence microscope. The alumina membrane provides pL (∼ 10(-12)L) containers for confining single-DNA molecules without immobilization. When one end of the DNA molecule was inserted into a nanopore, it was possible to monitor the digestion process outside, near and inside the pore, where the individual DNA molecules exhibited different characteristic digestion modes. The digestion rates calculated from the decrease in fluorescence intensity showed different values according to the location of the individual molecules. Entrapment rather than immobilization allows the DNA strand to be fully exposed to the enzyme and the reaction buffer. These results confirm that the enzymatic digestion of DNA molecules is affected by their three-dimensional (3D) environment.
利用荧光显微镜观察到 λ-核酸外切酶在纳米多孔氧化铝膜中实时消化包裹的单链 DNA 分子。氧化铝膜为单链 DNA 分子提供了无需固定的 pL(约 10(-12)L)容器。当 DNA 分子的一端插入纳米孔时,可以在孔外、孔附近和孔内监测消化过程,其中单个 DNA 分子表现出不同的特征消化模式。根据单个分子的位置,从荧光强度下降计算出的消化速率显示出不同的值。包埋而不是固定可以使 DNA 链完全暴露于酶和反应缓冲液中。这些结果证实 DNA 分子的酶消化受到其三维(3D)环境的影响。