Bourbigot Sarah, Ramalanjaona Nick, Boudier Christian, Salgado Gilmar F J, Roques Bernard P, Mély Yves, Bouaziz Serge, Morellet Nelly
Unité de Pharmacologie Chimique et Génétique, CNRS, UMR 8151, Inserm, U 640, Paris, F-75270 cedex 06, France.
J Mol Biol. 2008 Nov 28;383(5):1112-28. doi: 10.1016/j.jmb.2008.08.046. Epub 2008 Aug 26.
The human immunodeficiency virus type 1 nucleocapsid protein (NCp7) plays an important role in the second strand transfer during reverse transcription. It promotes annealing of the 18-nucleotide complementary DNA primer-binding site (PBS) sequences at the 3' ends of (-)DNA and (+)DNA. NMR studies show that NCp7(12-55) and NCp7(1-55) interact at the 5' end of the loop of DeltaP(-)PBS, a (-)PBS derivative without the 3' protruding sequence, in a slow-exchange equilibrium. This interaction is mediated through the binding of the hydrophobic plateau (Val13, Phe16, Thr24, Ala25, Trp37, and Met46) on the zinc finger domain of both peptides to the 5-CTG-7 sequence of DeltaP(-)PBS. The stacking of the Trp37 aromatic ring with the G7 residue likely constitutes the determinant factor of the interaction. Although NCp7(12-55) does not melt the DeltaP(-)PBS stem-loop structure, it opens the loop and weakens the C5.G11 base pair next to the loop. Moreover, NCp7(12-55) was also found to bind but with lower affinity to the 10-CGG-12 sequence in an intermediate-exchange equilibrium on the NMR time scale. The loop modifications may favour a kissing interaction with the complementary (+)PBS loop. Moreover, the weakening of the upper base pair of the stem likely promotes the melting of the stem that is required to convert the kissing complex into the final (+/-)PBS extended duplex.
1型人类免疫缺陷病毒核衣壳蛋白(NCp7)在逆转录过程中的第二条链转移中起重要作用。它促进(-)DNA和(+)DNA 3'端18个核苷酸的互补DNA引物结合位点(PBS)序列的退火。核磁共振研究表明,NCp7(12 - 55)和NCp7(1 - 55)在DeltaP(-)PBS(一种没有3'突出序列的(-)PBS衍生物)环的5'端以缓慢交换平衡相互作用。这种相互作用是通过两种肽的锌指结构域上的疏水平台(Val13、Phe16、Thr24、Ala25、Trp37和Met46)与DeltaP(-)PBS的5-CTG-7序列结合介导的。Trp37芳香环与G7残基的堆积可能构成了相互作用的决定因素。虽然NCp7(12 - 55)不会解开DeltaP(-)PBS茎环结构,但它会打开环并削弱环旁边的C5.G11碱基对。此外,还发现NCp7(12 - 55)在核磁共振时间尺度上以中间交换平衡与10-CGG-12序列结合,但亲和力较低。环的修饰可能有利于与互补的(+)PBS环进行亲吻相互作用。此外,茎上部碱基对的削弱可能促进茎的解链,这是将亲吻复合物转化为最终的(+/-)PBS延伸双链体所必需的。