Landes Christy F, Zeng Yining, Liu Hsiao-Wei, Musier-Forsyth Karin, Barbara Paul F
Department of Chemistry and Biochemistry, Center for Nano and Molecular Science and Technology, The University of Texas at Austin, Austin, Texas 78712, USA.
J Am Chem Soc. 2007 Aug 22;129(33):10181-8. doi: 10.1021/ja071491r. Epub 2007 Jul 21.
Single-molecule spectroscopy was used to examine how a model inhibitor of HIV-1, argininamide, modulates the nucleic acid chaperone activity of the nucleocapsid protein (NC) in the minus-strand transfer step of HIV-1 reverse transcription, in vitro. In minus-strand transfer, the transactivation response region (TAR) RNA of the genome is annealed to the complementary "TAR DNA" generated during minus-strand strong-stop DNA synthesis. Argininamide and its analogs are known to bind to the hairpin bulge region of TAR RNA as well as to various DNA loop structures, but its ability to inhibit the strand transfer process has only been implied. Here, we explore how argininamide modulates the annealing kinetics and secondary structure of TAR DNA. The studies reveal that the argininamide inhibitory mechanism involves a shift of the secondary structure of TAR, away from the NC-induced "Y" form, an intermediate in reverse transcription, and toward the free closed or "C" form. In addition, more potent inhibition of the loop-mediated annealing pathway than stem-mediated annealing is observed. Taken together, these data suggest a molecular mechanism wherein argininamide inhibits NC-facilitated TAR RNA/DNA annealing in vitro by interfering with the formation of key annealing intermediates.
单分子光谱法被用于体外研究HIV-1的一种模型抑制剂精氨酰胺如何在HIV-1逆转录的负链转移步骤中调节核衣壳蛋白(NC)的核酸伴侣活性。在负链转移过程中,基因组的反式激活应答区域(TAR)RNA与负链强终止DNA合成过程中产生的互补“TAR DNA”退火。已知精氨酰胺及其类似物能与TAR RNA的发夹凸起区域以及各种DNA环结构结合,但其抑制链转移过程的能力此前仅为推测。在此,我们探究精氨酰胺如何调节TAR DNA的退火动力学和二级结构。研究表明,精氨酰胺的抑制机制涉及TAR二级结构从NC诱导的“Y”形(逆转录中的一种中间体)向游离的封闭或“C”形转变。此外,观察到精氨酰胺对环介导的退火途径的抑制作用比对茎介导的退火更强。综上所述,这些数据表明了一种分子机制,即精氨酰胺通过干扰关键退火中间体的形成在体外抑制NC促进的TAR RNA/DNA退火。