Hepatitis B virus (HBV) is a small double-stranded DNA virus that chronically infects 296 million people. Over half of its compact genome encodes proteins in two overlapping reading frames, and during evolution, multiple selective pressures can act on shared nucleotides. This study combines an RNA-based HBV cell culture system with deep mutational scanning (DMS) to uncouple cis- and trans-acting sequence requirements in the HBV genome. The results support a leaky ribosome scanning model for polymerase translation, provide a fitness map of the HBV polymerase at single-nucleotide resolution, and identify conserved prolines adjacent to the HBV polymerase termination codon that stall ribosomes. Further experiments indicated that stalled ribosomes tether the nascent polymerase to its template RNA, ensuring cis-preferential RNA packaging and reverse transcription of the HBV genome.
Deep mutational scanning of hepatitis B virus reveals a mechanism for cis-preferential reverse transcription.
对乙型肝炎病毒进行深度突变扫描揭示了顺式优先逆转录的机制
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作者:Yu Yingpu, Kass Maximilian A, Zhang Mengyin, Youssef Noor, Freije Catherine A, Brock Kelly P, Aguado Lauren C, Seifert Leon L, Venkittu Sanjana, Hong Xupeng, Shlomai Amir, de Jong Ype P, Marks Debora S, Rice Charles M, Schneider William M
| 期刊: | Cell | 影响因子: | 42.500 |
| 时间: | 2024 | 起止号: | 2024 May 23; 187(11):2735-2745 |
| doi: | 10.1016/j.cell.2024.04.008 | 研究方向: | 炎症/感染 |
| 疾病类型: | 肝炎 | ||
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