Department of Antiviral Research, Merck Research Laboratories, WP26A-3000, 770 Sumneytown Pike, P.O. Box 4, West Point, PA 19486, USA.
Methods. 2009 Apr;47(4):249-53. doi: 10.1016/j.ymeth.2009.03.002. Epub 2009 Mar 12.
The early events of HIV-1 replication are highlighted by reverse transcription and integration, and the reverse transcriptase and integrase enzymes are important therapeutic targets. Integration proceeds through a series of steps including assembly of integrase on the viral donor DNA ends, 3'-processing, and DNA strand transfer. First generation integrase assays typically included all biochemical reagents in solution where excess donor substrate could serve as the target for DNA strand transfer. These conditions, though valuable for understanding mechanistic aspects of HIV-1 integration, fell short of critical pharmacological designs as most early inhibitors were found to block assembly instead of enzyme function. Second generation designs, which decoupled assembly from DNA strand transfer, afforded the specificity required to identify clinically relevant compounds. Here, we describe versatile scintillation proximity-based assays whereby integrase is assembled onto donor DNA that is immobilized onto the surface of beads. Immobilization and subsequent washing of excess donor DNA eliminates its potential to serve as target DNA, allowing investigation of the DNA strand transfer reaction in isolation. Assembled complexes can be used in high-throughput DNA strand transfer assays if radio labeled target DNA is employed or in integrase binding assays using a suitable radioligand.
HIV-1 复制的早期事件以逆转录和整合为突出特点,逆转录酶和整合酶是重要的治疗靶点。整合过程包括一系列步骤,包括整合酶在病毒供体 DNA 末端的组装、3'-加工和 DNA 链转移。第一代整合酶测定法通常包括溶液中的所有生化试剂,其中过量的供体底物可以作为 DNA 链转移的靶标。这些条件虽然对于理解 HIV-1 整合的机制方面很有价值,但在关键的药理学设计方面却不尽如人意,因为大多数早期抑制剂被发现会阻止组装而不是抑制酶的功能。第二代设计将组装与 DNA 链转移分离,提供了识别临床相关化合物所需的特异性。在这里,我们描述了多功能闪烁接近测定法,其中整合酶组装到固定在珠上的供体 DNA 上。供体 DNA 的固定和随后的洗涤消除了其作为靶 DNA 的可能性,从而可以在不涉及其他 DNA 的情况下单独研究 DNA 链转移反应。如果使用放射性标记的靶 DNA,则组装的复合物可用于高通量 DNA 链转移测定法,或者如果使用合适的放射性配体,则可用于整合酶结合测定法。