Poe Jerrod A, Smithgall Thomas E
Department of Microbiology and Molecular Genetics, University of Pittsburgh School of Medicine, E1240 Biomedical Science Tower, Pittsburgh, PA 15261, USA.
J Mol Biol. 2009 Nov 27;394(2):329-42. doi: 10.1016/j.jmb.2009.09.047. Epub 2009 Sep 23.
Nef, a human immunodeficiency virus type 1 (HIV-1) accessory factor capable of interaction with a diverse array of host cell signaling molecules, is essential for high-titer HIV replication and AIDS progression. Previous biochemical and structural studies have suggested that Nef may form homodimers and higher-order oligomers in HIV-infected cells, which may be required for both immune and viral receptor downregulation as well as viral replication. Using bimolecular fluorescence complementation, we provide the first direct evidence for Nef dimers within HIV host cells and identify the structural requirements for dimerization in vivo. Bimolecular fluorescence complementation analysis shows that the multiple hydrophobic and electrostatic interactions found within the dimerization interface of the Nef X-ray crystal structure are essential for dimerization in cells. Nef dimers localized to the plasma membrane as well as the trans-Golgi network, two subcellular localizations essential for Nef function. Mutations in the Nef dimerization interface dramatically reduced both Nef-induced CD4 downregulation and HIV replication. Viruses expressing dimerization-defective Nef mutants were disabled to the same extent as HIV that fails to express Nef in terms of replication. These results identify the Nef dimerization region as a potential molecular target for antiretroviral drug discovery.
Nef是一种能够与多种宿主细胞信号分子相互作用的1型人类免疫缺陷病毒(HIV-1)辅助因子,对于高滴度HIV复制和艾滋病进展至关重要。先前的生化和结构研究表明,Nef可能在HIV感染的细胞中形成同二聚体和高阶寡聚体,这可能是免疫和病毒受体下调以及病毒复制所必需的。利用双分子荧光互补技术,我们首次为HIV宿主细胞内的Nef二聚体提供了直接证据,并确定了体内二聚化的结构要求。双分子荧光互补分析表明,在Nef X射线晶体结构的二聚化界面内发现的多种疏水和静电相互作用对于细胞内的二聚化至关重要。Nef二聚体定位于质膜以及反式高尔基体网络,这是Nef功能所必需的两个亚细胞定位。Nef二聚化界面的突变显著降低了Nef诱导的CD4下调和HIV复制。就复制而言,表达二聚化缺陷型Nef突变体的病毒与不表达Nef的HIV一样被抑制。这些结果确定Nef二聚化区域是抗逆转录病毒药物发现的潜在分子靶点。