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HIV-1 整合酶三聚体与转运蛋白 3(TNPO3 或 TRN-SR2)的相互作用。

Interaction of the HIV-1 intasome with transportin 3 protein (TNPO3 or TRN-SR2).

机构信息

Center for Retrovirus Research and Comprehensive Cancer Center, College of Pharmacy, The Ohio State University, Columbus, Ohio 43210, USA.

出版信息

J Biol Chem. 2012 Oct 5;287(41):34044-58. doi: 10.1074/jbc.M112.384669. Epub 2012 Aug 7.

Abstract

Transportin 3 (TNPO3 or TRN-SR2) has been shown to be an important cellular factor for early steps of lentiviral replication. However, separate studies have implicated distinct mechanisms for TNPO3 either through its interaction with HIV-1 integrase or capsid. Here we have carried out a detailed biophysical characterization of TNPO3 and investigated its interactions with viral proteins. Biophysical analyses including circular dichroism, analytical ultracentrifugation, small-angle x-ray scattering, and homology modeling provide insight into TNPO3 architecture and indicate that it is highly structured and exists in a monomer-dimer equilibrium in solution. In vitro biochemical binding assays argued against meaningful direct interaction between TNPO3 and the capsid cores. Instead, TNPO3 effectively bound to the functional intasome but not to naked viral DNA, suggesting that TNPO3 can directly engage the HIV-1 IN tetramer prebound to the cognate DNA. Mass spectrometry-based protein footprinting and site-directed mutagenesis studies have enabled us to map several interacting amino acids in the HIV-1 IN C-terminal domain and the cargo binding domain of TNPO3. Our findings provide important information for future genetic analysis to better understand the role of TNPO3 and its interacting partners for HIV-1 replication.

摘要

TNPO3(也称为 TRN-SR2)已被证明是逆转录病毒复制早期阶段的重要细胞因子。然而,单独的研究表明,TNPO3 可能通过与 HIV-1 整合酶或衣壳的相互作用而具有不同的机制。在这里,我们对 TNPO3 进行了详细的生物物理特性分析,并研究了其与病毒蛋白的相互作用。包括圆二色性、分析超速离心、小角度 X 射线散射和同源建模在内的生物物理分析提供了对 TNPO3 结构的深入了解,并表明它具有高度的结构,并且在溶液中以单体-二聚体平衡存在。体外生化结合测定表明,TNPO3 与衣壳核心之间没有有意义的直接相互作用。相反,TNPO3 有效地与功能性整合酶结合,但与裸露的病毒 DNA 不结合,这表明 TNPO3 可以直接与预先结合在同源 DNA 上的 HIV-1 IN 四聚体结合。基于质谱的蛋白质足迹分析和定点突变研究使我们能够对 HIV-1 IN C 末端结构域和 TNPO3 的货物结合结构域中的几个相互作用氨基酸进行定位。我们的发现为进一步的遗传分析提供了重要信息,以更好地了解 TNPO3 及其相互作用伙伴在 HIV-1 复制中的作用。

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