Chao Mei, Wang Tzu-Chi, Lin Chia-Chi, Yung-Liang Wang Robert, Lin Wen-Bin, Lee Shang-En, Cheng Ying-Yu, Yeh Chau-Ting, Iang Shan-Bei
Department of Microbiology and Immunology, Chang Gung University, Guishan, Taoyang, Taiwan.
Division of Microbiology, Graduate Institute of Biomedical Sciences, Chang Gung University, Guishan, Taoyang, Taiwan.
Oncotarget. 2017 Jun 1;8(37):60841-60859. doi: 10.18632/oncotarget.18339. eCollection 2017 Sep 22.
The genome of hepatitis delta virus (HDV) is a 1.7-kb single-stranded circular RNA that folds into an unbranched rod-like structure and has ribozyme activity. HDV redirects host RNA polymerase(s) (RNAP) to perform viral RNA-directed RNA transcription. RNA recombination is known to contribute to the genetic heterogeneity of HDV, but its molecular mechanism is poorly understood. Here, we established a whole-genome HDV-1/HDV-4 recombination map using two cloned sequences coexisting in cultured cells. Our functional analyses of the resulting chimeric delta antigens (the only viral-encoded protein) and recombinant genomes provide insights into how recombination promotes the genotypic and phenotypic diversity of HDV. Our examination of crossover distribution and subsequent mutagenesis analyses demonstrated that ribozyme activity on HDV genome, which is required for viral replication, also contributes to the generation of an inter-clade junction. These data provide circumstantial evidence supporting our contention that HDV RNA recombination occurs via a replication-dependent mechanism. Furthermore, we identify an intrinsic asymmetric bulge on the HDV genome, which appears to promote recombination events in the vicinity. We therefore propose a mammalian RNAP-driven and viral-RNA-structure-promoted template-switching mechanism for HDV genetic recombination. The present findings improve our understanding of the capacities of the host RNAP beyond typical DNA-directed transcription.
丁型肝炎病毒(HDV)的基因组是一个1.7kb的单链环状RNA,它折叠成一个无分支的棒状结构并具有核酶活性。HDV重定向宿主RNA聚合酶(RNAP)以进行病毒RNA指导的RNA转录。已知RNA重组有助于HDV的遗传异质性,但其分子机制尚不清楚。在这里,我们使用培养细胞中共存的两个克隆序列建立了一个全基因组HDV-1/HDV-4重组图谱。我们对产生的嵌合δ抗原(唯一的病毒编码蛋白)和重组基因组的功能分析为重组如何促进HDV的基因型和表型多样性提供了见解。我们对交叉分布的检查和随后的诱变分析表明,病毒复制所需的HDV基因组上的核酶活性也有助于产生种间连接。这些数据提供了间接证据支持我们的论点,即HDV RNA重组通过复制依赖机制发生。此外,我们在HDV基因组上鉴定出一个内在的不对称凸起,它似乎促进了附近的重组事件。因此,我们提出了一种哺乳动物RNAP驱动和病毒RNA结构促进的HDV基因重组模板转换机制。目前的发现增进了我们对宿主RNAP超出典型DNA指导转录能力的理解。