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1. Extended antibody-framework-to-antigen distance observed exclusively with broad HIV-1-neutralizing antibodies recognizing glycan-dense surfaces.

2. Mutational fitness landscapes reveal genetic and structural improvement pathways for a vaccine-elicited HIV-1 broadly neutralizing antibody.

3. Recapitulation of HIV-1 Env-antibody coevolution in macaques leading to neutralization breadth.

4. A matrix of structure-based designs yields improved VRC01-class antibodies for HIV-1 therapy and prevention.

5. Automated Design by Structure-Based Stabilization and Consensus Repair to Achieve Prefusion-Closed Envelope Trimers in a Wide Variety of HIV Strains.

6. VRC34-Antibody Lineage Development Reveals How a Required Rare Mutation Shapes the Maturation of a Broad HIV-Neutralizing Lineage.

7. Structure of Super-Potent Antibody CAP256-VRC26.25 in Complex with HIV-1 Envelope Reveals a Combined Mode of Trimer-Apex Recognition.

8. Removal of variable domain N -linked glycosylation as a means to improve the homogeneity of HIV-1 broadly neutralizing antibodies.

9. Antibody Lineages with Vaccine-Induced Antigen-Binding Hotspots Develop Broad HIV Neutralization.

10. Consistent elicitation of cross-clade HIV-neutralizing responses achieved in guinea pigs after fusion peptide priming by repetitive envelope trimer boosting.

11. Longitudinal Analysis Reveals Early Development of Three MPER-Directed Neutralizing Antibody Lineages from an HIV-1-Infected Individual.

12. Sequencing HIV-neutralizing antibody exons and introns reveals detailed aspects of lineage maturation.

13. Complete functional mapping of infection- and vaccine-elicited antibodies against the fusion peptide of HIV.

14. Epitope-based vaccine design yields fusion peptide-directed antibodies that neutralize diverse strains of HIV-1.

15. A Neutralizing Antibody Recognizing Primarily N-Linked Glycan Targets the Silent Face of the HIV Envelope.

16. Surface-Matrix Screening Identifies Semi-specific Interactions that Improve Potency of a Near Pan-reactive HIV-1-Neutralizing Antibody.

17. Free Energy Perturbation Calculation of Relative Binding Free Energy between Broadly Neutralizing Antibodies and the gp120 Glycoprotein of HIV-1.

18. Identification of a CD4-Binding-Site Antibody to HIV that Evolved Near-Pan Neutralization Breadth.

19. Developmental Pathway of the MPER-Directed HIV-1-Neutralizing Antibody 10E8.

20. Optimization of the Solubility of HIV-1-Neutralizing Antibody 10E8 through Somatic Variation and Structure-Based Design.

21. Maturation Pathway from Germline to Broad HIV-1 Neutralizer of a CD4-Mimic Antibody.

22. Structures of HIV-1 Env V1V2 with broadly neutralizing antibodies reveal commonalities that enable vaccine design.

23. Crystal structure, conformational fixation and entry-related interactions of mature ligand-free HIV-1 Env.

24. Eliminating antibody polyreactivity through addition of N-linked glycosylation.

25. Neutralization properties of simian immunodeficiency viruses infecting chimpanzees and gorillas.

26. Structural definition of an antibody-dependent cellular cytotoxicity response implicated in reduced risk for HIV-1 infection.

27. Enhanced potency of a broadly neutralizing HIV-1 antibody in vitro improves protection against lentiviral infection in vivo.

28. Structural basis for HIV-1 neutralization by 2F5-like antibodies m66 and m66.6.

29. Multidonor analysis reveals structural elements, genetic determinants, and maturation pathway for HIV-1 neutralization by VRC01-class antibodies.

30. Structural basis for diverse N-glycan recognition by HIV-1-neutralizing V1-V2-directed antibody PG16.

31. Co-evolution of a broadly neutralizing HIV-1 antibody and founder virus.

32. Outer domain of HIV-1 gp120: antigenic optimization, structural malleability, and crystal structure with antibody VRC-PG04.

33. Broad and potent neutralization of HIV-1 by a gp41-specific human antibody.

34. Structure of HIV-1 gp120 V1/V2 domain with broadly neutralizing antibody PG9.

35. Analysis of a clonal lineage of HIV-1 envelope V2/V3 conformational epitope-specific broadly neutralizing antibodies and their inferred unmutated common ancestors.

36. Focused evolution of HIV-1 neutralizing antibodies revealed by structures and deep sequencing.

37. Immunotypes of a quaternary site of HIV-1 vulnerability and their recognition by antibodies.

38. Crystal structure of human antibody 2909 reveals conserved features of quaternary structure-specific antibodies that potently neutralize HIV-1.

39. Structural basis for llama nanobody recognition and neutralization of HIV-1

40. Eliminating antibody polyreactivity through addition of N-linked glycosylation

41. Multi-donor Analysis Reveals Structural Elements, Genetic Determinants, and Maturation Pathway for Effective HIV-1 Neutralization by VRCO1-class Antibodies

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