Ag processing is a critical step in defining the repertoire of epitope-specific immune responses. In the present study, HIV-1 p55Gag Ag was synthesized as a DNA plasmid with either lysosomal-associated membrane protein-1 (LAMP/gag) or human dendritic cell-LAMP (DC-LAMP/gag) and used to immunize mice. Analysis of the cellular trafficking of these two chimeras demonstrated that both molecules colocalized with MHC class II molecules but differed in their overall trafficking to endosomal/lysosomal compartments. Following DNA immunization, both chimeras elicited potent Gag-specific T and B cell immune responses in mice but differ markedly in their IL-4 and IgG1/IgG2a responses. The DC-LAMP chimera induced a stronger Th type 1 response. ELISPOT analysis of T cell responses to 122 individual peptides encompassing the entire p55gag sequence (15-aa peptides overlapping by 11 residues) showed that DNA immunization with native gag, LAMP/gag, or DC-LAMP/gag induced responses to identical immunodominant CD4+ and CD8+ peptides. However, LAMP/gag and DC-LAMP/gag plasmids also elicited significant responses to 23 additional cryptic epitopes that were not recognized after immunization with native gag DNA. The three plasmids induced T cell responses to a total of 39 distinct peptide sequences, 13 of which were induced by all three DNA constructs. Individually, DC-LAMP/gag elicited the most diverse response, with a specific T cell response against 35 peptides. In addition, immunization with LAMP/gag and DC-LAMP/gag chimeras also promoted Ab secretion to an increased number of epitopes. These data indicate that LAMP-1 and DC-LAMP Ag chimeras follow different trafficking pathways, induce distinct modulatory immune responses, and are able to present cryptic epitopes.
Enterotoxigenic (ETEC) is a global diarrheal pathogen that utilizes adhesins and secreted enterotoxins to cause disease in mammalian hosts. Decades of research on virulence factor regulation in ETEC has revealed a variety of environmental factors that influence gene expression, including bile, pH, bicarbonate, osmolarity, and glucose. However, other hallmarks of the intestinal tract, such as low oxygen availability, have not been examined. Further, determining how ETEC integrates these signals in the complex host environment is challenging. To address this, we characterized ETEC's response to the human host using samples from a controlled human infection model. We found ETEC senses environmental oxygen to globally influence virulence factor expression via the oxygen-sensitive transcriptional regulator fumarate and nitrate reduction (FNR) regulator. In vitro anaerobic growth replicates the in vivo virulence factor expression profile, and deletion of in ETEC strain H10407 results in a significant increase in expression of all classical virulence factors, including the colonization factor antigen I (CFA/I) adhesin operon and both heat-stable and heat-labile enterotoxins. These data depict a model of ETEC infection where FNR activity can globally influence virulence gene expression, and therefore proximity to the oxygenated zone bordering intestinal epithelial cells likely influences ETEC virulence gene expression in vivo. Outside of the host, ETEC biofilms are associated with seasonal ETEC epidemics, and we find FNR is a regulator of biofilm production. Together these data suggest FNR-dependent oxygen sensing in ETEC has implications for human infection inside and outside of the host.
Background: Maternal exposure to environmental ubiquitous allergens could exert an influence on the newborn’s immune repertoire and the later development of allergy. The aim of this study was to investigate the effects of maternal immunization with Dermatophagoides pteronyssinus (Dp) on the hypersensitivity response and IgG subclass production in offspring using a murine model. Methods: A/Sn mice were immunized with Dp before mating with normal A/Sn males. Diaplacental serum samples were collected from newborn mice delivered by cesarean section, and maternal milk samples were extracted from the stomachs of newborn mice. Groups of offspring 25 or 45 days old were Dp immunized and boosted on the 10th day after sensitization. The animals were bled 7 days after the booster. Results: High levels of anti-Dp IgG subclasses – mainly IgG1, but also IgG2a and IgG2b – were transmitted by immunized mice via the placenta to the offspring. In the milk from immunized mothers, significant levels of anti-Dp IgG subclasses and anti-Dp IgM and IgA antibodies were detected. Moreover, the increase in total IgA antibodies in the milk of the immunized females correlated with a significantly increased level of TGF-β1. TGF-β2 levels were markedly higher than the β1 isoform in the milk, although no difference was observed between the groups. When offspring from immunized mothers were sensitized at 25 days, a significant decrease in total and anti-Dp IgE antibodies as well as total and anti-Dp IgG1, IgG2a and IgG2b subclasses was observed compared to normal female offspring, whereas when offspring were sensitized at 45 days, both offspring groups showed similar levels of IgE and IgG subclasses. Conclusions: Our study showed that maternal immunization with Dp promotes the transference of specific antibodies and/or TGF-β, which can negatively modulate the allergic response in offspring, and suggests that maternal preexposure to allergen before mating can protect mice during the early phase.
Attenuated live oral typhoid vaccine candidate CVD 909 constitutively expresses Salmonella Typhi capsular polysaccharide antigen (Vi). A randomized, double-blind, heterologous prime-boost clinical study was conducted to determine whether immunity to licensed parenteral Vi vaccine could be enhanced by priming with CVD 909. Priming with CVD 909 elicited higher and persistent, albeit not significant, anti-Vi IgG and IgA following immunization with Vi, than placebo-primed recipients. Vi-specific IgA B memory (BM) cells were significantly increased in CVD 909-primed subjects. S. Typhi-specific LPS and flagella IgA BM cells were observed in subjects immunized with CVD 909 or with the licensed Vi-negative oral typhoid vaccine Ty21a. CVD 909-induced BM cells exhibited a classical BM phenotype (i.e., CD3−CD19+IgD−CD27+). This is the first demonstration of classical BM cells specific for bacterial polysaccharide or protein antigens following typhoid immunization. The persistent IgA BM responses demonstrate the capacity of oral typhoid vaccines to prime mucosally relevant immune memory.
scite is a Brooklyn-based organization that helps researchers better discover and understand research articles through Smart Citations–citations that display the context of the citation and describe whether the article provides supporting or contrasting evidence. scite is used by students and researchers from around the world and is funded in part by the National Science Foundation and the National Institute on Drug Abuse of the National Institutes of Health.
customersupport@researchsolutions.com
10624 S. Eastern Ave., Ste. A-614
Henderson, NV 89052, USA
This site is protected by reCAPTCHA and the Google Privacy Policy and Terms of Service apply.
Copyright © 2024 scite LLC. All rights reserved.
Made with 💙 for researchers
Part of the Research Solutions Family.