Pang Xiao-Jing, Hu Si-Qi, Zhang Yue, Cen Shan, Jin Qi, Guo Fei
Institute of Pathogen Biology, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing 100730, China.
Bing Du Xue Bao. 2012 Nov;28(6):633-8.
BST-2 plays an important role in host innate immune response via inhibiting the release of HIV-1. HIV-1 accessory protein Vpu can interact with BST-2 through its transmembrane domains, degrade BST-2, and decrease BST-2 that are transported to the cell surface, thus anti-virus function of BST-2 is antagonized. In our study, we constructed plasmid RB connecting Rluc to the N-termimal of BST-2, and plasmid VE connecting EYFP to the C-terminal of Vpu. The two fusion proteins were co-expressed in 293 cells, and the interaction between the two proteins was detected via BRET method. And we further established a stable 293 cell line of dual-expression. By using BRET method, and the interaction between BST-2 and Vpu transmembrane domain as the target, a high-throughput screening assay was created that was expected to seek novel interaction inhibitors.
BST-2通过抑制HIV-1的释放,在宿主天然免疫反应中发挥重要作用。HIV-1辅助蛋白Vpu可通过其跨膜结构域与BST-2相互作用,降解BST-2,并减少转运至细胞表面的BST-2,从而拮抗BST-2的抗病毒功能。在我们的研究中,我们构建了将Rluc连接至BST-2 N端的质粒RB,以及将EYFP连接至Vpu C端的质粒VE。这两种融合蛋白在293细胞中共表达,并通过BRET方法检测两种蛋白之间的相互作用。并且我们进一步建立了双表达的稳定293细胞系。以BRET方法以及BST-2与Vpu跨膜结构域之间的相互作用为靶点,创建了一种高通量筛选检测方法,期望寻找到新型相互作用抑制剂。