Shapiro Adam B, Eakin Ann E, Walkup Grant K, Rivin Olga
AstraZeneca R&D Boston, Waltham, Massachusetts 02451, USA.
J Biomol Screen. 2011 Jun;16(5):486-93. doi: 10.1177/1087057111398295. Epub 2011 Mar 11.
DNA ligase is the enzyme that catalyzes the formation of the backbone phosphodiester bond between the 5'-PO(4) and 3'-OH of adjacent DNA nucleotides at single-stranded nicks. These nicks occur between Okazaki fragments during replication of the lagging strand of the DNA as well as during DNA repair and recombination. As essential enzymes for DNA replication, the NAD(+)-dependent DNA ligases of pathogenic bacteria are potential targets for the development of antibacterial drugs. For the purposes of drug discovery, a high-throughput assay for DNA ligase activity is invaluable. This article describes a straightforward, fluorescence resonance energy transfer-based DNA ligase assay that is well suited for high-throughput screening for DNA ligase inhibitors as well as for use in enzyme kinetics studies. Its use is demonstrated for measurement of the steady-state kinetic constants of Haemophilus influenzae NAD(+)-dependent DNA ligase and for measurement of the potency of an inhibitor of this enzyme.
DNA连接酶是一种催化单链切口处相邻DNA核苷酸的5'-磷酸基团(5'-PO(4))和3'-羟基(3'-OH)之间形成主链磷酸二酯键的酶。这些切口出现在DNA滞后链复制过程中的冈崎片段之间,以及DNA修复和重组过程中。作为DNA复制的必需酶,致病细菌中依赖NAD(+)的DNA连接酶是抗菌药物开发的潜在靶点。为了药物发现的目的,一种用于DNA连接酶活性的高通量检测方法非常有价值。本文描述了一种简单的、基于荧光共振能量转移的DNA连接酶检测方法,该方法非常适合用于高通量筛选DNA连接酶抑制剂以及用于酶动力学研究。文中展示了该方法用于测量流感嗜血杆菌依赖NAD(+)的DNA连接酶的稳态动力学常数以及用于测量该酶抑制剂的效力。