Antibody Fc effector functions and IgG3 associate with decreased HIV-1 risk
JOURNAL OF CLINICAL INVESTIGATION
Authors: Neidich, Scott D.; Fong, Youyi; Li, Shuying S.; Geraghty, Daniel E.; Williamson, Brian D.; Young, William Chad; Goodman, Derrick; Seaton, Kelly E.; Shen, Xiaoying; Sawant, Sheetal; Zhang, Lu; deCamp, Allan C.; Blette, Bryan S.; Shao, Mengshu; Yates, Nicole L.; Feely, Frederick; Pyo, Chul-Woo; Ferrari, Guido; Frank, Ian; Karuna, Shelly T.; Swann, Edith M.; Mascola, John R.; Graham, Barney S.; Hammer, Scott M.; Sobieszczyk, Magdalena E.; Corey, Lawrence; Janes, Holly E.; McElrath, M. Juliana; Gottardo, Raphael; Gilbert, Peter B.; Tomaras, Georgia D.; Buchbinder, Susan; DeJesus, Edwin; Kalams, Spyros; Keefer, Mike; Mulligan, Mark; Novak, Richard
Abstract
HVTN 505 is a preventative vaccine efficacy trial testing DNA followed by recombinant adenovirus serotype 5 (rAd5) in circumcised, Ads-seronegative men and transgendered persons who have sex with men in the United States. Identified immune correlates of lower HIV-1 risk and a virus sieve analysis revealed that, despite lacking overall efficacy, vaccine-elicited responses exerted pressure on infecting HIV-1 viruses. To interrogate the mechanism of the antibody correlate of HIV-1 risk, we examined antigen-specific antibody recruitment of Fc gamma receptors (Fc gamma Rs), antibody-dependent cellular phagocytosis (ADCP), and the role of anti-envelope (anti-Env) IgG3. In a prespecified immune correlates analysis, antibody-dependent monocyte phagocytosis and antibody binding to Fc gamma RIIa correlated with decreased HIV-1 risk. Follow-up analyses revealed that anti-Env IgG3 breadth correlated with reduced HIV-1 risk, anti-Env IgA negatively modified infection risk by Fc effector functions, and that vaccine recipients with a specific Fc gamma RIIa single-nucleotide polymorphism locus had a stronger correlation with decreased HIV-1 risk when ADCP, Env-Fc gamma RIIa, and IgG3 binding were high. Additionally, Fc gamma RIIa engagement correlated with decreased viral load setpoint in vaccine recipients who acquired HIV-1. These data support a role for vaccine-elicited anti-HIV-1 Env IgG3, antibody engagement of FcRs, and phagocytosis as potential mechanisms for HIV-1 prevention.
Revisiting the Pig IGHC Gene Locus in Different Breeds Uncovers Nine Distinct IGHG Genes
JOURNAL OF IMMUNOLOGY
Authors: Zhang, Ming; Li, Zhenrong; Li, Jingying; Huang, Tian; Peng, Gaochuang; Tang, Wenda; Yi, Guoqiang; Zhang, Lifan; Song, Yu; Liu, Tianran; Hu, Xiaoxiang; Ren, Liming; Liu, Honglin; Butler, John E.; Han, Haitang; Zhao, Yaofeng
Abstract
IgG subclass diversification is common in placental mammals. It has been well documented in humans and mice that different IgG subclasses, with diversified functions, synergistically regulate humoral immunity. However, our knowledge on the genomic and functional diversification of IgG subclasses in the pig, a mammalian species with high agricultural and biomedical importance, is incomplete. Using bacterial artificial chromosome sequencing and newly assembled genomes generated by the PacBio sequencing approach, we characterized and mapped the IgH C region gene locus in three indigenous Chinese breeds (Erhualian, Xiang, and Luchuan) and compared them to that of Duroc. Our data revealed that IGHG genes in Chinese pigs differ from the Duroc, whereas the IGHM, IGHD, IGHA, and IGHE genes were all single copy and highly conserved in the pig breeds examined. Most striking were differences in numbers of IGHG genes: there are seven genes in Erhualian pigs, six in the Duroc, but only five in Xiang pigs. Phylogenetic analysis suggested that all reported porcine IGHG genes could be classified into nine subclasses: IGHG1, IGHG2a, IGHG2b, IGHG2c, IGHG3, IGHG4, IGHG5a, IGHG5b, and IGHG5c. Using sequence information, we developed a mouse mAb specific for IgG3. This study offers a starting point to investigate the structure-function relationship of IgG subclasses in pigs.