Structure of HIV-1 gp120 V1/V2 domain with broadly neutralizing antibody PG9.
Jason S JS McLellan,
Marie M Pancera,
Chris C Carrico,
Jason J Gorman,
Jean-Philippe JP Julien,
Reza R Khayat,
Robert R Louder,
Robert R Pejchal,
Mallika M Sastry,
Kaifan K Dai,
Sijy S O'Dell,
Nikita N Patel,
Syed S Shahzad-ul-Hussan,
Yongping Y Yang,
Baoshan B Zhang,
Tongqing T Zhou,
Jiang J Zhu,
Jeffrey C JC Boyington,
Gwo-Yu GY Chuang,
Devan D Diwanji,
Ivelin I Georgiev,
Young Do YD Kwon,
Doyung D Lee,
Mark K MK Louder,
Stephanie S Moquin,
Stephen D SD Schmidt,
Zhi-Yong ZY Yang,
Mattia M Bonsignori,
John A JA Crump,
Saidi H SH Kapiga,
Noel E NE Sam,
Barton F BF Haynes,
Dennis R DR Burton,
Wayne C WC Koff,
Laura M LM Walker,
Sanjay S Phogat,
Richard R Wyatt,
Jared J Orwenyo,
Lai-Xi LX Wang,
James J Arthos,
Carole A CA Bewley,
John R JR Mascola,
Gary J GJ Nabel,
William R WR Schief,
Andrew B AB Ward,
Ian A IA Wilson and
Peter D PD Kwong
crossref 480(7377):336-43 15 Dec 2011
PMID 22113616
Variable regions 1 and 2 (V1/V2) of human immunodeficiency virus-1 (HIV-1) gp120 envelope glycoprotein are critical for viral evasion of antibody neutralization, and are themselves protected by extraordinary sequence diversity and N-linked glycosylation. Human antibodies such as PG9 nonetheless engage V1/V2 and neutralize 80% of HIV-1 isolates. Here we report the structure of V1/V2 in complex with PG9. V1/V2 forms a four-stranded β-sheet domain, in which sequence diversity and glycosylation are largely segregated to strand-connecting loops. PG9 recognition involves electrostatic, sequence-independent and glycan interactions: the latter account for over half the interactive surface but are of sufficiently weak affinity to avoid autoreactivity. The structures of V1/V2-directed antibodies CH04 and PGT145 indicate that they share a common mode of glycan penetration by extended anionic loops. In addition to structurally defining V1/V2, the results thus identify a paradigm of antibody recognition for highly glycosylated antigens, which-with PG9-involves a site of vulnerability comprising just two glycans and a strand.
DOI: 10.1038/nature10696
Version: za2963e q8zad q8zb5 q8zc8 q8zd5 q8zeb q8zf2 q8zg2
Viewers of this paper also looked at these papers: