Gelgor Anastasia, Kalt Inna, Bergson Shir, Brulois Kevin F, Jung Jae U, Sarid Ronit
The Mina and Everard Goodman Faculty of Life Sciences, Bar Ilan University, Ramat-Gan, Israel.
Department of Molecular Microbiology and Immunology, Keck School of Medicine, University of Southern California, Los Angeles, California, USA.
J Virol. 2015 May;89(10):5298-307. doi: 10.1128/JVI.00098-15. Epub 2015 Mar 4.
The Kaposi's sarcoma-associated herpesvirus (KSHV) open reading frame 16 (orf16) encodes a viral Bcl-2 (vBcl-2) protein which shares sequence and functional homology with the Bcl-2 family. Like its cellular homologs, vBcl-2 protects various cell types from apoptosis and can also negatively regulate autophagy. vBcl-2 is transcribed during lytic infection; however, its exact function has not been determined to date. By using bacterial artificial chromosome 16 (BAC16) clone carrying the full-length KSHV genome, we have generated recombinant KSHV mutants that fail to express vBcl-2 or express mCherry-tagged vBcl-2. We show that the vBcl-2 protein is expressed at relatively low levels during lytic induction and that a lack of vBcl-2 largely reduces the efficiency of KSHV reactivation in terms of lytic gene expression, viral DNA replication, and production of infectious particles. In contrast, the establishment of latency was not affected by the absence of vBcl-2. Our findings suggest an important role for vBcl-2 during initial phases of lytic reactivation and/or during subsequent viral propagation. Given the known functions of vBcl-2 in regulating apoptosis and autophagy, which involve its direct interaction with cellular proteins and thus require high levels of protein expression, it appears that vBcl-2 may have additional regulatory functions that do not depend on high levels of protein expression.
The present study shows for the first time the expression of endogenous vBcl-2 protein in KSHV-infected cell lines and demonstrates the importance of vBcl-2 during the initial phases of lytic reactivation and/or during its subsequent propagation. It is suggested that vBcl-2 has additional regulatory functions beyond apoptosis and autophagy repression that do not depend on high levels of protein expression.
卡波西肉瘤相关疱疹病毒(KSHV)开放阅读框16(orf16)编码一种病毒Bcl-2(vBcl-2)蛋白,该蛋白与Bcl-2家族具有序列和功能同源性。与细胞同源物一样,vBcl-2可保护多种细胞类型免于凋亡,还可负向调节自噬。vBcl-2在裂解感染期间转录;然而,其确切功能迄今尚未确定。通过使用携带全长KSHV基因组的细菌人工染色体16(BAC16)克隆,我们构建了无法表达vBcl-2或表达mCherry标记的vBcl-2的重组KSHV突变体。我们发现,vBcl-2蛋白在裂解诱导期间表达水平相对较低,并且缺乏vBcl-2在很大程度上降低了KSHV再激活在裂解基因表达、病毒DNA复制和感染性颗粒产生方面的效率。相比之下,潜伏的建立不受vBcl-2缺失的影响。我们的研究结果表明vBcl-2在裂解再激活的初始阶段和/或随后的病毒传播过程中起重要作用。鉴于vBcl-2在调节凋亡和自噬方面的已知功能,这涉及到它与细胞蛋白的直接相互作用,因此需要高水平的蛋白表达,似乎vBcl-2可能具有不依赖于高水平蛋白表达的额外调节功能。
本研究首次展示了内源性vBcl-2蛋白在KSHV感染细胞系中的表达,并证明了vBcl-2在裂解再激活的初始阶段和/或随后的传播过程中的重要性。提示vBcl-2除了抑制凋亡和自噬外,还具有不依赖于高水平蛋白表达的额外调节功能。