Pan Deng, Xuan Baoqin, Sun Yamei, Huang Shaowu, Xie Maorong, Bai Yadan, Xu Wenjia, Qian Zhikang
Unit of Herpesvirus and Molecular Virology, Key Laboratory of Molecular Virology &Immunology, Institut Pasteur of Shanghai, Chinese Academy of Sciences, University of the Chinese Academy of Sciences, Shanghai, China.
Institutes for Advanced Interdisciplinary Research, East China Normal University, Shanghai, China.
Sci Rep. 2016 May 18;6:26167. doi: 10.1038/srep26167.
Functional analysis of the essential proteins encoded by human cytomegalovirus (HCMV) is hindered by the lack of complementing systems. To overcome this difficulty, we have established a novel approach, termed the intein-mediated modulation of protein stability (imPS), in which a destabilizing domain and part of a split intein are fused to the essential protein. The growth of the mutant virus can then be regulated by the degradation and splicing of the protein. We found that an ultrafast gp41-1 split intein was able to rescue or degrade the protein of interest (POI) by removing or adding a strong degron through protein splicing. As a result, the function of the POI was turned on or off during the process. Using HCMV essential gene IE1/IE2, we confirmed that imPS worked remarkably well in conditionally regulating protein stability during viral infection. This conditional approach is likely to be applicable for dissecting the gene functions of HCMV or other viruses.
人巨细胞病毒(HCMV)编码的必需蛋白的功能分析因缺乏互补系统而受阻。为克服这一困难,我们建立了一种新方法,称为内含肽介导的蛋白质稳定性调节(imPS),其中一个不稳定结构域和部分分裂内含肽与必需蛋白融合。然后,突变病毒的生长可以通过蛋白质的降解和剪接来调节。我们发现,超快gp41-1分裂内含肽能够通过蛋白质剪接去除或添加强降解结构域,从而拯救或降解目标蛋白(POI)。结果,POI的功能在这一过程中被开启或关闭。利用HCMV必需基因IE1/IE2,我们证实imPS在病毒感染期间有条件地调节蛋白质稳定性方面表现出色。这种有条件的方法可能适用于剖析HCMV或其他病毒的基因功能。