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24 results on '"Shi, Pei"'

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1. Nucleocapsid mutations in SARS-CoV-2 augment replication and pathogenesis.

2. A platform of assays for the discovery of anti-Zika small-molecules with activity in a 3D-bioprinted outer-blood-retina model.

3. Mouse-adapted SARS-CoV-2 protects animals from lethal SARS-CoV challenge.

4. Inhibition of innate immune response ameliorates Zika virus-induced neurogenesis deficit in human neural stem cells.

5. In vivo antiviral host transcriptional response to SARS-CoV-2 by viral load, sex, and age.

6. Role of microglia in the dissemination of Zika virus from mother to fetal brain.

7. Molecular basis of dengue virus serotype 2 morphological switch from 29°C to 37°C.

8. Characterization of a candidate tetravalent vaccine based on 2'-O-methyltransferase mutants.

9. 2′-O Methylation of Internal Adenosine by Flavivirus NS[subscript 5] Methyltransferase

10. Potent Allosteric Dengue Virus NS5 Polymerase Inhibitors: Mechanism of Action and Resistance Profiling.

11. A Crystal Structure of the Dengue Virus NS5 Protein Reveals a Novel Inter-domain Interface Essential for Protein Flexibility and Virus Replication.

12. Dengue Therapeutics, Chemoprophylaxis, and Allied Tools: State of the Art and Future Directions.

13. The Interface between Methyltransferase and Polymerase of NS5 Is Essential for Flavivirus Replication.

14. Rational Design of a Live Attenuated Dengue Vaccine: 2′-O-Methyltransferase Mutants Are Highly Attenuated and Immunogenic in Mice and Macaques.

15. A Single Amino Acid Substitution in the Core Protein of West Nile Virus Increases Resistance to Acidotropic Compounds.

16. Therapeutics for Dengue: Recommendations for Design and Conduct of Early-Phase Clinical Trials.

17. West Nile Virus Experimental Evolution in vivo and the Trade-off Hypothesis.

18. Correction: Role of microglia in the dissemination of Zika virus from mother to fetal brain.

19. CMPK2 restricts Zika virus replication by inhibiting viral translation.

20. Peli1 signaling blockade attenuates congenital zika syndrome.

21. Dengue subgenomic flaviviral RNA disrupts immunity in mosquito salivary glands to increase virus transmission.

22. Rational design of a live attenuated dengue vaccine: 2'-o-methyltransferase mutants are highly attenuated and immunogenic in mice and macaques.

23. 2'-O methylation of internal adenosine by flavivirus NS5 methyltransferase.

24. Crystal structure of the dengue virus methyltransferase bound to a 5'-capped octameric RNA.

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