Department of Biochemistry and Molecular Biology, University of Arkansas for Medical Sciences, Little Rock, AR, United States.
Department of Biochemistry and Molecular Biology, University of Arkansas for Medical Sciences, Little Rock, AR, United States; Winthrop P. Rockefeller Cancer Institute, University of Arkansas for Medical Sciences, Little Rock, AR, United States.
Methods Enzymol. 2022;672:1-27. doi: 10.1016/bs.mie.2022.02.018. Epub 2022 Mar 25.
Helicases catalyze the unwinding of duplex nucleic acids to aid a variety of cellular processes. Although helicases unwind duplex DNA in the same direction that they translocate on single-stranded DNA, forked duplexes provide opportunities to monitor unwinding by helicase monomers bound to each arm of the fork. The activity of the helicase bound to the displaced strand can be discerned alongside the helicase bound to the translocase strand using a forked substrate with accessible duplexes on both strands labeled with different fluorophores. In order to quantify the effect of protein-protein interactions on the activity of multiple monomers of the Bacteroides fragilis Pif1 helicase bound to separate strands of a forked DNA junction, an ensemble gel-based assay for monitoring simultaneous duplex unwinding was developed (Su et al., 2019). Here, the use of that assay is described for measuring the total product formation and rate constants of product formation of multiple duplexes on a single nucleic acid substrate. Use of this assay may aid characterization of protein-protein interactions between multiple helicase monomers at forked nucleic acid junctions and can assist with the characterization of helicase action on the displaced strand of forked duplexes.
解旋酶催化双链核酸的解旋,以辅助多种细胞过程。尽管解旋酶在沿单链 DNA 移动的同一方向上解旋双链 DNA,但分叉的双链体提供了监测解旋酶单体结合到叉臂的机会。使用带有可访问的双链体的分叉底物,在两条链上用不同的荧光标记物标记,结合到置换链的解旋酶的活性可以与结合到易位链的解旋酶区分开来。为了量化蛋白质-蛋白质相互作用对结合到分叉 DNA 连接点的不同链上的多个 Bacteroides fragilis Pif1 解旋酶单体的活性的影响,开发了一种用于监测同时双链解旋的基于胶束的集合测定法(Su 等人,2019 年)。在这里,描述了该测定法在测量单个核酸底物上多个双链体的总产物形成和产物形成速率常数方面的用途。该测定法的使用可以帮助表征分叉核酸连接处的多个解旋酶单体之间的蛋白质-蛋白质相互作用,并有助于表征解旋酶对分叉双链体的置换链的作用。