Howard Hughes Medical Institute, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.
Methods. 2010 Jul;51(3):313-21. doi: 10.1016/j.ymeth.2010.02.014. Epub 2010 Feb 16.
Many quantitative approaches for analysis of helicase-nucleic acid interactions require a robust and specific signal, which reports on the presence of the helicase and its position on a nucleic acid lattice. Since 2006, iron-sulfur (FeS) clusters have been found in a number of helicases. They serve as endogenous quenchers of Cy3 and Cy5 fluorescence which can be exploited to characterize FeS cluster containing helicases both in ensemble-based assays and at the single-molecule level. Synthetic oligonucleotides site-specifically labeled with either Cy3 or Cy5 can be used to create a variety of DNA substrates that can be used to characterized DNA binding, as well as helicase translocation and unwinding. Equilibrium binding affinities for ssDNA, duplex and branched DNA substrates can be determined using bulk assays. Identification of preferred cognate substrates, and the orientation and position of the helicase when bound to DNA can also be determined by taking advantage of the intrinsic quencher in the helicase. At the single-molecule level, real-time observation of the helicase translocating along DNA either towards the dye or away from the dye can be used to determine the rate of translocation by the helicase on ssDNA and its orientation when bound to DNA. The use of duplex substrates can reveal the rate of unwinding and processivity of the helicase. Finally, the FeS cluster can be used to visualize protein-protein interactions, and to examine the interplay between helicases and other DNA binding proteins on the same DNA substrate.
许多用于分析解旋酶-核酸相互作用的定量方法都需要一个强大且特异性的信号,该信号可以报告解旋酶的存在及其在核酸晶格上的位置。自 2006 年以来,许多解旋酶中都发现了铁硫(FeS)簇。它们可以作为 Cy3 和 Cy5 荧光的内源性猝灭剂,可用于在基于群体的测定和单分子水平上表征含 FeS 簇的解旋酶。可以使用特异性标记有 Cy3 或 Cy5 的合成寡核苷酸来创建各种 DNA 底物,这些底物可用于表征 DNA 结合以及解旋酶的迁移和解旋。可以使用批量测定法确定 ssDNA、双链体和分支 DNA 底物的平衡结合亲和力。通过利用解旋酶中的固有猝灭剂,还可以确定优先的同源底物,以及当与 DNA 结合时解旋酶的取向和位置。在单分子水平上,可以实时观察解旋酶沿着 DNA 向染料或远离染料迁移,从而确定解旋酶在 ssDNA 上的迁移速度及其与 DNA 结合时的取向。使用双链体底物可以揭示解旋酶的解旋和连续性。最后,可以使用 FeS 簇来可视化蛋白质-蛋白质相互作用,并研究同一 DNA 底物上解旋酶与其他 DNA 结合蛋白之间的相互作用。