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用于HIV-1整合酶3β加工和链转移活性的均相高通量筛选测定法。

Homogeneous high-throughput screening assays for HIV-1 integrase 3beta-processing and strand transfer activities.

作者信息

Wang Yu, Klock Heath, Yin Hong, Wolff Karen, Bieza Kimberly, Niswonger Kirk, Matzen Jason, Gunderson Drew, Hale Joanna, Lesley Scott, Kuhen Kelli, Caldwell Jeremy, Brinker Achim

机构信息

Genomics Institute of the Novartis Research Foundation, San Diego, CA 92121, USA.

出版信息

J Biomol Screen. 2005 Aug;10(5):456-62. doi: 10.1177/1087057105275212.

Abstract

HIV-1 integrase (HIV-IN) is a well-validated antiviral drug target catalyzing a multistep reaction to incorporate the HIV-1 provirus into the genome of the host cell. Small molecule inhibitors of HIV-1 integrase that specifically target the strand transfer step have demonstrated efficacy in the suppression of virus propagation. However, only few specific strand transfer inhibitors have been identified to date, and the need to screen for novel compound scaffolds persists. Here, the authors describe 2 homogeneous time-resolved fluorescent resonance energy transfer-based assays for the measurement of HIV-1 integrase 3'-processing and strand transfer activities. Both assays were optimized for high-throughput screening formats, and a diverse library containing more than 1 million compounds was screened in 1536-well plates for HIV-IN strand transfer inhibitors. As a result, compounds were found that selectively affect the enzymatic strand transfer reaction over 3beta processing. Moreover, several bioactive molecules were identified that inhibited HIV-1 reporter virus infection in cellular model systems. In conclusion, the assays presented herein have proven their utility for the identification of mechanistically interesting and biologically active inhibitors of HIV-1 integrase that hold potential for further development into potent antiviral drugs.

摘要

HIV-1整合酶(HIV-IN)是一个经过充分验证的抗病毒药物靶点,它催化一个多步骤反应,将HIV-1前病毒整合到宿主细胞的基因组中。特异性靶向链转移步骤的HIV-1整合酶小分子抑制剂已在抑制病毒传播方面显示出疗效。然而,迄今为止仅鉴定出少数特异性链转移抑制剂,因此仍需要筛选新型化合物支架。在此,作者描述了两种基于均相时间分辨荧光共振能量转移的测定方法,用于测量HIV-1整合酶的3'-加工和链转移活性。这两种测定方法均针对高通量筛选形式进行了优化,并在1536孔板中对一个包含超过100万种化合物的多样化文库进行了HIV-IN链转移抑制剂筛选。结果,发现了一些化合物,它们对酶促链转移反应的选择性高于3β加工。此外,还鉴定出了几种生物活性分子,它们在细胞模型系统中抑制HIV-1报告病毒感染。总之,本文介绍的测定方法已证明其在鉴定具有机制研究意义和生物活性的HIV-1整合酶抑制剂方面的实用性,这些抑制剂具有进一步开发成有效抗病毒药物的潜力。

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