McKee Christopher J, Kessl Jacques J, Shkriabai Nikolozi, Dar Mohd Jamal, Engelman Alan, 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 Nov 14;283(46):31802-12. doi: 10.1074/jbc.M805843200. Epub 2008 Sep 18.
The mandatory integration of the reverse-transcribed HIV-1 genome into host chromatin is catalyzed by the viral protein integrase (IN), and IN activity can be regulated by numerous viral and cellular proteins. Among these, LEDGF has been identified as a cellular cofactor critical for effective HIV-1 integration. The x-ray crystal structure of the catalytic core domain (CCD) of IN in complex with the IN binding domain (IBD) of LEDGF has furthermore revealed essential protein-protein contacts. However, mutagenic studies indicated that interactions between the full-length proteins were more extensive than the contacts observed in the co-crystal structure of the isolated domains. Therefore, we have conducted detailed biochemical characterization of the interactions between full-length IN and LEDGF. Our results reveal a highly dynamic nature of IN subunit-subunit interactions. LEDGF strongly stabilized these interactions and promoted IN tetramerization. Mass spectrometric protein footprinting and molecular modeling experiments uncovered novel intra- and inter-protein-protein contacts in the full-length IN-LEDGF complex that lay outside of the observable IBD-CCD structure. In particular, our studies defined the IN tetramer interface important for enzymatic activities and high affinity LEDGF binding. These findings provide new insight into how LEDGF modulates HIV-1 IN structure and function, and highlight the potential for exploiting the highly dynamic structure of multimeric IN as a novel therapeutic target.
由病毒蛋白整合酶(IN)催化,逆转录的HIV-1基因组必须整合到宿主染色质中,并且IN的活性可受多种病毒和细胞蛋白调节。其中,LEDGF已被确定为对HIV-1有效整合至关重要的细胞辅因子。此外,IN的催化核心结构域(CCD)与LEDGF的IN结合结构域(IBD)形成复合物的X射线晶体结构揭示了重要的蛋白质-蛋白质相互作用。然而,诱变研究表明全长蛋白质之间的相互作用比在分离结构域的共晶体结构中观察到的相互作用更广泛。因此,我们对全长IN与LEDGF之间的相互作用进行了详细的生化表征。我们的结果揭示了IN亚基-亚基相互作用的高度动态性质。LEDGF强烈稳定了这些相互作用并促进了IN四聚化。质谱蛋白质足迹和分子建模实验揭示了全长IN-LEDGF复合物中位于可观察到的IBD-CCD结构之外的新型蛋白质内和蛋白质间相互作用。特别是,我们的研究确定了对酶活性和高亲和力LEDGF结合很重要的IN四聚体界面。这些发现为LEDGF如何调节HIV-1 IN的结构和功能提供了新的见解,并突出了利用多聚体IN的高度动态结构作为新型治疗靶点的潜力。