The live-attenuated yellow fever 17D vaccine strain differs genetically only minimally from its virulent parent. However, it remains unclear which sequence differences lead to virulence or attenuation. Here we demonstrate, using SHAPE-MaP, that these mutations do not induce global RNA structure changes and show that protein sequence mutations are mostly responsible for the phenotypic differences between 17D and virulent YFV. Using a highly modular, combinatorial genetic approach, we identified key mutations in the envelope (E) and non-structural 2A (NS2A) proteins that increase 17D's ability to spread and enhance host antiviral responses. Introducing these mutations into infectious clones of virulent YFV genomes results in viral attenuation in vitro and in two mouse models. Collectively, our results define the genetic basis for 17D attenuation and highlight a potentially general approach for creating live-attenuated vaccines by introducing mutations resulting in similar phenotypic changes in other pathogenic viruses.
Amino acid changes in two viral proteins drive attenuation of the yellow fever 17D vaccine.
两种病毒蛋白的氨基酸变化导致黄热病17D疫苗的效力减弱
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作者:Zhang Jiayu, Chavez Elizabeth C, Winkler Melina, Liu Jianche, Carver Sebastian, Lin Aaron E, Biswas Abhishek, Tamura Tomokazu, Tseng Anna, Wang Danyang, Benhamou Aaron, O' Connell Aoife K, Matsuo Mao, Norton Jack E, Kenney Devin, Adamson Britt, Kleiner Ralph E, Burwitz Benjamin, Crossland Nicholas A, Douam Florian, Ploss Alexander
| 期刊: | Nature Microbiology | 影响因子: | 19.400 |
| 时间: | 2025 | 起止号: | 2025 Aug;10(8):1902-1917 |
| doi: | 10.1038/s41564-025-02047-y | 种属: | Viral |
| 研究方向: | 其它 | ||
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