LBPA, UMR 8113, ENS Paris-Saclay-CNRS, 61 avenue du Président Wilson, 94235 Cachan cedex, France.
LPTM, CNRS UMR 8089, Université de Cergy-Pontoise, 2 avenue Adolphe Chauvin, 95031 Cergy-Pontoise, France.
J Mol Biol. 2019 May 3;431(10):1966-1980. doi: 10.1016/j.jmb.2019.03.002. Epub 2019 Mar 12.
A comprehensive view of all the structural aspects related to NCp7 is essential to understand how this protein, crucial in many steps of the HIV-1 cycle, binds and anneals nucleic acids (NAs), mainly thanks to two zinc fingers, ZF1 and ZF2. Here, we inspected the structural properties of the available experimental models of NCp7 bound to either DNA or RNA molecules, or free of ligand. Our analyses included the characterization of the relative positioning of ZF1 and ZF2, accessibility measurements and the exhaustive, quantitative mapping of the contacts between amino acids and nucleotides by a recent tessellation method, VLDM. This approach unveiled the intimate connection between NA binding process and the conformations explored by the free protein. It also provided new insights into the functional specializations of ZF1 and ZF2. The larger accessibility of ZF2 in free NCp7 and the consistency of the ZF2/NA interface in different models and conditions give ZF2 the lead of the binding process. ZF1 contributes to stabilize the complexes through various organizations of the ZF1/NA interface. This work outcome is a global binding scheme of NCp7 to DNA and RNA, and an example of how protein-NA complexes are stabilized.
全面了解与 NCp7 相关的所有结构方面对于理解该蛋白质至关重要,它在 HIV-1 周期的许多步骤中都起着关键作用,主要归功于两个锌指结构域 ZF1 和 ZF2,NCp7 通过这两个结构域结合和退火核酸(NA)。在这里,我们检查了与 DNA 或 RNA 分子结合或无配体结合的 NCp7 现有实验模型的结构特性,包括 ZF1 和 ZF2 的相对位置、可及性测量以及最近的 VLDM 分块方法对氨基酸和核苷酸之间接触的详尽定量映射。这种方法揭示了 NA 结合过程与游离蛋白探索的构象之间的紧密联系。它还为 ZF1 和 ZF2 的功能专业化提供了新的见解。游离 NCp7 中 ZF2 更大的可及性以及不同模型和条件下 ZF2/NA 界面的一致性使 ZF2 成为结合过程的主导。ZF1 通过 ZF1/NA 界面的各种组织为稳定复合物做出贡献。这项工作的结果是 NCp7 与 DNA 和 RNA 的整体结合方案,以及蛋白质-NA 复合物如何稳定的一个示例。