Zhao Zhuojun, McKee Christopher J, Kessl Jacques J, Santos Webster L, Daigle Janet E, Engelman Alan, Verdine Gregory, Kvaratskhelia Mamuka
Center for Retrovirus Research and Comprehensive Cancer Center, College of Pharmacy, The Ohio State University, Columbus, Ohio 43210, USA.
J Biol Chem. 2008 Feb 29;283(9):5632-41. doi: 10.1074/jbc.M705241200. Epub 2007 Dec 19.
To identify functional contacts between HIV-1 integrase (IN) and its viral DNA substrate, we devised a new experimental strategy combining the following two methodologies. First, disulfide-mediated cross-linking was used to site-specifically link select core and C-terminal domain amino acids to respective positions in viral DNA. Next, surface topologies of free IN and IN-DNA complexes were compared using Lys- and Arg-selective small chemical modifiers and mass spectrometric analysis. This approach enabled us to dissect specific contacts made by different monomers within the multimeric complex. The foot-printing studies for the first time revealed the importance of a specific N-terminal domain residue, Lys-14, in viral DNA binding. In addition, a DNA-induced conformational change involving the connection between the core and C-terminal domains was observed. Site-directed mutagenesis experiments confirmed the importance of the identified contacts for recombinant IN activities and virus infection. These new findings provided major constraints, enabling us to identify the viral DNA binding channel in the active full-length IN multimer. The experimental approach described here has general application to mapping interactions within functional nucleoprotein complexes.
为了确定HIV-1整合酶(IN)与其病毒DNA底物之间的功能性接触,我们设计了一种新的实验策略,该策略结合了以下两种方法。首先,使用二硫键介导的交联将选定的核心和C末端结构域氨基酸位点特异性地连接到病毒DNA中的相应位置。其次,使用赖氨酸和精氨酸选择性小化学修饰剂和质谱分析比较游离IN和IN-DNA复合物的表面拓扑结构。这种方法使我们能够剖析多聚体复合物中不同单体形成的特定接触。足迹研究首次揭示了特定N末端结构域残基Lys-14在病毒DNA结合中的重要性。此外,还观察到涉及核心和C末端结构域之间连接的DNA诱导的构象变化。定点诱变实验证实了所确定的接触对于重组IN活性和病毒感染的重要性。这些新发现提供了主要限制条件,使我们能够确定活性全长IN多聚体中的病毒DNA结合通道。这里描述的实验方法普遍适用于绘制功能性核蛋白复合物内的相互作用。