Broadly neutralizing antibodies (bNAbs) targeting the apex of the HIV-1-envelope (Env) trimer comprise the most potent category of HIV-1 bNAbs and have emerged as promising therapeutics. Here, we investigate the development of the HIV-1 apex-directed PGT145-PGDM1400 antibody lineage and report cryo-EM structures at 3.4Â Ã resolution of PGDM1400 and of an improved PGT145 variant (PGT145-R100aS), each bound to the BG505 Env trimer. Cross-species-based engineering improves PGT145 IC(80) breadth to near that of PGDM1400. Despite similar breadth and potency, the two antibodies differ in their residue-level interactions with important apex features, including N160 glycans and apex cavity, with residue 100i of PGT145 (sulfated tyrosine) penetrating â¼7Â Ã farther than residue 100i of PGDM1400 (aspartic acid). While apex-directed bNAbs from other donors use maturation pathways that often converge on analogous residue-level recognition, our results demonstrate that divergent residue-level recognition can occur within the same lineage, thereby enabling improved coverage of escape variants.
Structural development of the HIV-1 apex-directed PGT145-PGDM1400 antibody lineage.
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作者:Mason Rosemarie D, Zhang Baoshan, Morano Nicholas C, Shen Chen-Hsiang, McKee Krisha, Heimann Ashley, Du Renguang, Nazzari Alexandra F, Hodges Shelby, Kanai Tapan, Lin Bob C, Louder Mark K, Doria-Rose Nicole A, Zhou Tongqing, Shapiro Lawrence, Roederer Mario, Kwong Peter D, Gorman Jason
| 期刊: | Cell Reports | 影响因子: | 6.900 |
| 时间: | 2025 | 起止号: | 2025 Jan 28; 44(1):115223 |
| doi: | 10.1016/j.celrep.2024.115223 | ||
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