Department of Cell Biology, Kyoto Pharmaceutical University, Kyoto 607-8412, Japan.
Department of Virology, Graduate School of Medicine, University of the Ryukyus, Okinawa 903-0215, Japan.
Int J Mol Sci. 2022 Aug 25;23(17):9647. doi: 10.3390/ijms23179647.
Kaposi's sarcoma-associated herpesvirus (KSHV) is the etiologic agent of Kaposi's sarcoma, primary effusion lymphoma (PEL), and multicentric Castleman's disease. During KSHV lytic infection, lytic-related genes, categorized as immediate-early, early, and late genes, are expressed in a temporal manner. The transcription of late genes requires the virus-specific pre-initiation complex (vPIC), which consists of viral transcription factors. However, the protein-protein interactions of the vPIC factors have not been completely elucidated. KSHV ORF18 is one of the vPIC factors, and its interaction with other viral proteins has not been sufficiently revealed. In order to clarify these issues, we analyzed the interaction between ORF18 and another vPIC factor, ORF30, in living cells using the bimolecular fluorescence complementation (BiFC) assay. We identified four amino-acid residues (Leu29, Glu36, His41, and Trp170) of ORF18 that were responsible for its interaction with ORF30. Pull-down assays also showed that these four residues were required for the ORF18-ORF30 interaction. The artificial intelligence (AI) system AlphaFold2 predicted that the identified four residues are localized on the surface of ORF18 and are in proximity to each other. Thus, our AI-predicted model supports the importance of the four residues for binding ORF18 to ORF30. These results indicated that wet experiments in combination with AI may enhance the structural characterization of vPIC protein-protein interactions.
卡波济肉瘤相关疱疹病毒(KSHV)是卡波济肉瘤、原发性渗出性淋巴瘤(PEL)和多中心卡斯特曼病的病原体。在 KSHV 裂解感染过程中,裂解相关基因被分为即刻早期、早期和晚期基因,并以时间方式表达。晚期基因的转录需要病毒特异性起始前复合物(vPIC),其由病毒转录因子组成。然而,vPIC 因子的蛋白质-蛋白质相互作用尚未完全阐明。KSHV ORF18 是 vPIC 因子之一,其与其他病毒蛋白的相互作用尚未充分揭示。为了解决这些问题,我们使用双分子荧光互补(BiFC)测定法在活细胞中分析了 ORF18 与另一个 vPIC 因子 ORF30 之间的相互作用。我们确定了 ORF18 中负责与 ORF30 相互作用的四个氨基酸残基(Leu29、Glu36、His41 和 Trp170)。下拉测定还表明,这四个残基是 ORF18-ORF30 相互作用所必需的。人工智能(AI)系统 AlphaFold2 预测,鉴定的四个残基位于 ORF18 的表面上,彼此接近。因此,我们的 AI 预测模型支持这四个残基对于结合 ORF18 到 ORF30 的重要性。这些结果表明,将湿实验与 AI 相结合可能会增强 vPIC 蛋白-蛋白相互作用的结构特征。