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1. A Protective Monoclonal Antibody Targets a Site of Vulnerability on the Surface of Rift Valley Fever Virus

2. Mechanisms of escape from the PGT128 family of anti-HIV broadly neutralizing antibodies

3. The T-cell-directed vaccine BNT162b4 encoding conserved non-spike antigens protects animals from severe SARS-CoV-2 infection.

4. Contrasting Modes of New World Arenavirus Neutralization by Immunization-Elicited Monoclonal Antibodies.

5. Cross-reactivity of glycan-reactive HIV-1 broadly neutralizing antibodies with parasite glycans.

6. Structural Basis for a Neutralizing Antibody Response Elicited by a Recombinant Hantaan Virus Gn Immunogen.

7. BNT162b vaccines protect rhesus macaques from SARS-CoV-2.

8. Molecular rationale for antibody-mediated targeting of the hantavirus fusion glycoprotein.

9. Targeting Glycans on Human Pathogens for Vaccine Design.

10. Convergent immunological solutions to Argentine hemorrhagic fever virus neutralization.

11. The Tetrameric Plant Lectin BanLec Neutralizes HIV through Bidentate Binding to Specific Viral Glycans.

12. The structurally disordered paramyxovirus nucleocapsid protein tail domain is a regulator of the mRNA transcription gradient.

13. HIV-1 Glycan Density Drives the Persistence of the Mannose Patch within an Infected Individual.

14. EGFR Interacts with the Fusion Protein of Respiratory Syncytial Virus Strain 2-20 and Mediates Infection and Mucin Expression.

15. Composition and Antigenic Effects of Individual Glycan Sites of a Trimeric HIV-1 Envelope Glycoprotein.

16. Tunable and reversible drug control of protein production via a self-excising degron.

17. Glycan Microheterogeneity at the PGT135 Antibody Recognition Site on HIV-1 gp120 Reveals a Molecular Mechanism for Neutralization Resistance.

18. Glycan clustering stabilizes the mannose patch of HIV-1 and preserves vulnerability to broadly neutralizing antibodies.

20. Two classes of broadly neutralizing antibodies within a single lineage directed to the high-mannose patch of HIV envelope.

21. An orally available, small-molecule polymerase inhibitor shows efficacy against a lethal morbillivirus infection in a large animal model.

22. The measles virus nucleocapsid protein tail domain is dispensable for viral polymerase recruitment and activity.

23. Dual myxovirus screen identifies a small-molecule agonist of the host antiviral response.

24. Synthesis and Metabolic Studies of Host Directed Inhibitors for Anti Viral Therapy.

25. Non-nucleoside inhibitors of the measles virus RNA-dependent RNA polymerase: synthesis, structure-activity relationships, and pharmacokinetics.

26. Independent structural domains in paramyxovirus polymerase protein.

27. Host-directed Inhibitors of Myxoviruses: Synthesis and in vitro Biochemical Evaluation.

28. Potent host-directed small-molecule inhibitors of myxovirus RNA-dependent RNA-polymerases.

29. Probing the spatial organization of measles virus fusion complexes.

30. Target analysis of the experimental measles therapeutic AS-136A.

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