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Characterization and molecular basis of the oligomeric structure of HIV-1 nef protein.

机译:HIV-1 nef蛋白寡聚结构的表征和分子基础。

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摘要

The Nef protein of human immunodeficiency virus type I (HIV-1) is an important determinant for the onset of AIDS disease. The self-association properties of HIV-1 Nef are analyzed by chemical cross-linking, dynamic light scattering, equilibrium analytical ultracentrifugation, and NMR spectroscopy. The experimental data show that the HIV-1 Nef core domain forms stable homo-dimers and trimers in solution, but not higher oligomers. These Nef homomers are not covalently linked by disulfide bridges, and the equilibrium between these forms is dependent on the Nef concentration. We further provide the molecular basis for the Nef core dimers and trimers obtained by analysis of crystallographic models. Oligomerization of biological polypeptides is a common tool used to trigger events in cellular signaling and endocytosis, both of which are targeted by Nef. The quaternary structure of Nef may be of physiological importance and may help to connect its cellular targets or to increase affinity of the viral molecule for its ligands. The herein described models for Nef dimers and trimers will allow further mutational studies to elucidate their role in vivo. These results provide novel insight into the structural and functional relationships of this important viral protein. Moreover, the oligomer interface may represent a novel target for the design of antiviral agents.
机译:I型人类免疫缺陷病毒(HIV-1)的Nef蛋白是导致AIDS病发作的重要决定因素。通过化学交联,动态光散射,平衡分析超速离心和NMR光谱分析HIV-1 Nef的自缔合特性。实验数据表明,HIV-1 Nef核心结构域在溶液中形成稳定的均二聚体和三聚体,但不形成更高的寡聚体。这些Nef均聚物不是通过二硫键共价连接的,这些形式之间的平衡取决于Nef的浓度。我们进一步提供了通过晶体学模型分析获得的Nef核心二聚体和三聚体的分子基础。生物多肽的寡聚化是用于触发细胞信号转导和内吞作用的常见工具,Nef均将二者作为目标。 Nef的四级结构可能具有重要的生理意义,可能有助于连接其细胞靶标或增加病毒分子对其配体的亲和力。本文描述的Nef二聚体和三聚体的模型将允许进一​​步的突变研究以阐明其在体内的作用。这些结果提供了对该重要病毒蛋白的结构和功能关系的新颖见解。此外,低聚物界面可以代表抗病毒剂设计的新目标。

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