Department of Biology, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.
Methods. 2010 Jul;51(3):322-8. doi: 10.1016/j.ymeth.2010.02.008. Epub 2010 Feb 12.
Most processes involving an organism's genetic material, including replication, repair and recombination, require access to single-stranded DNA as a template or reaction intermediate. To disrupt the hydrogen bonds between the two strands in double-stranded DNA, organisms utilize proteins called DNA helicases. DNA helicases use duplex DNA as a substrate to create single-stranded DNA in a reaction that requires ATP hydrolysis. Due to their critical role in cellular function, understanding the reaction catalyzed by helicases is essential to understanding DNA metabolism. Helicases are also important in many disease processes due to their role in DNA maintenance and replication. Here we discuss ways to rapidly purify helicases in sufficient quantity for biochemical analysis. We also briefly discuss potential substrates to use with helicases to establish some of their critical biochemical parameters. Through the use of methods that simplify the study of helicases, our understanding of these essential proteins can be accelerated.
大多数涉及生物体遗传物质的过程,包括复制、修复和重组,都需要单链 DNA 作为模板或反应中间体。为了破坏双链 DNA 中两条链之间的氢键,生物体利用称为 DNA 解旋酶的蛋白质。DNA 解旋酶将双链 DNA 作为底物,在需要 ATP 水解的反应中产生单链 DNA。由于它们在细胞功能中的关键作用,理解解旋酶催化的反应对于理解 DNA 代谢至关重要。由于它们在 DNA 维持和复制中的作用,解旋酶在许多疾病过程中也很重要。在这里,我们讨论了快速纯化解旋酶以用于生化分析的方法。我们还简要讨论了与解旋酶一起使用的潜在底物,以确定它们的一些关键生化参数。通过使用简化解旋酶研究的方法,可以加速对这些必需蛋白质的理解。