Department of Molecular Microbiology and Immunology, School of Medicine, Saint Louis University, St Louis, Missouri, USA.
Department of Biochemistry, Molecular Biology and Biophysics, University of Minnesota, Minneapolis, Minnesota, USA.
J Biol Chem. 2023 Jun;299(6):104730. doi: 10.1016/j.jbc.2023.104730. Epub 2023 Apr 20.
Integration of retroviral DNA into the host genome involves the formation of integrase (IN)-DNA complexes termed intasomes. Further characterization of these complexes is needed to understand their assembly process. Here, we report the single-particle cryo-EM structure of the Rous sarcoma virus (RSV) strand transfer complex (STC) intasome produced with IN and a preassembled viral/target DNA substrate at 3.36 Å resolution. The conserved intasome core region consisting of IN subunits contributing active sites interacting with viral/target DNA has a resolution of 3 Å. Our structure demonstrated the flexibility of the distal IN subunits relative to the IN subunits in the conserved intasome core, similar to results previously shown with the RSV octameric cleaved synaptic complex intasome produced with IN and viral DNA only. An extensive analysis of higher resolution STC structure helped in the identification of nucleoprotein interactions important for intasome assembly. Using structure-function studies, we determined the mechanisms of several IN-DNA interactions critical for assembly of both RSV intasomes. We determined the role of IN residues R244, Y246, and S124 in cleaved synaptic complex and STC intasome assemblies and their catalytic activities, demonstrating differential effects. Taken together, these studies advance our understanding of different RSV intasome structures and molecular determinants involved in their assembly.
逆转录病毒 DNA 整合到宿主基因组中涉及整合酶 (IN)-DNA 复合物的形成,称为整合体。为了理解它们的组装过程,需要进一步表征这些复合物。在这里,我们报告了 Rous 肉瘤病毒 (RSV) 链转移复合物 (STC) 整合体的单颗粒冷冻电镜结构,该整合体是使用 IN 和预组装的病毒/靶 DNA 底物在 3.36 Å 分辨率下产生的。由与病毒/靶 DNA 相互作用的活性位点贡献的 IN 亚基组成的保守整合体核心区域的分辨率为 3 Å。我们的结构显示了远端 IN 亚基相对于保守整合体核心中的 IN 亚基的灵活性,这与先前仅使用 IN 和病毒 DNA 产生的 RSV 八聚体切割突触复合物整合体的结果相似。对更高分辨率 STC 结构的广泛分析有助于鉴定对整合体组装很重要的核蛋白相互作用。通过结构功能研究,我们确定了 IN-DNA 相互作用的几种机制,这些相互作用对于 RSV 整合体的组装至关重要。我们确定了 IN 残基 R244、Y246 和 S124 在切割突触复合物和 STC 整合体组装及其催化活性中的作用,证明了它们的作用存在差异。总之,这些研究提高了我们对不同 RSV 整合体结构及其组装中涉及的分子决定因素的理解。