The 2.5 angstrom Structure of CD1c in Complex with a Mycobacterial Lipid Reveals an Open Groove Ideally Suited for Diverse Antigen Presentation
IMMUNITY
Authors: Scharf, Louie; Li, Nan-Sheng; Hawk, Andrew J.; Garzon, Diana; Zhang, Tejia; Fox, Lisa M.; Kazen, Allison R.; Shah, Sneha; Haddadian, Esmael J.; Gumperz, Jenny E.; Saghatelian, Alan; Faraldo-Gomez, Jose D.; Meredith, Stephen C.; Piccirilli, Joseph A.; Adams, Erin J.
Abstract
CD1 molecules function to present lipid-based antigens to T cells. Here we present the crystal structure of CD1 c at 2.5 angstrom resolution, in complex with the pathogenic Mycobacterium tuberculosis antigen mannosyl-beta 1-phosphomycoketide (MPM). CD1c accommodated MPM's methylated alkyl chain exclusively in the A' pocket, aided by a unique exit portal underneath the alpha 1 helix. Most striking was an open F' pocket architecture lacking the closed cavity structure of other CD1 molecules, reminiscent of peptide binding grooves of classical major histocompatibility complex molecules. This feature, combined with tryptophan-fluorescence quenching during loading of a dodecameric lipopeptide antigen, provides a compelling model by which both the lipid and peptide moieties of the lipopeptide are involved in CD1c presentation of lipopeptides.
Systemic Antibiotic Therapy Reduces Circulating Inflammatory Dendritic Cells and Treg-Th17 Plasticity in Periodontitis
JOURNAL OF IMMUNOLOGY
Authors: Rajendran, Mythilypriya; Looney, Stephen; Singh, Nagendra; Elashiry, Mahmoud; Meghil, Mohamed M.; El-Awady, Ahmed R.; Tawfik, Omnia; Susin, Cristiano; Arce, Roger M.; Cutler, Christopher W.
Abstract
Periodontitis (PD) is a common dysbiotic inflammatory disease that leads to local bone deterioration and tooth loss. PD patients experience low-grade bacteremias with oral microbes implicated in the risk of heart disease, cancer, and kidney failure. Although Th17 effectors are vital to fighting infection, functional imbalance of Th17 effectors and regulatory T cells (Tregs) promote inflammatory diseases. In this study, we investigated, in a small pilot randomized clinical trial, whether expansion of inflammatory blood myeloid dendritic cells (DCs) and conversion of Tregs to Th17 cells could be modulated with antibiotics (AB) as part of initial therapy in PD patients. PD patients were randomly assigned to either 7 d of peroral metronidazole/amoxicillin AB treatment or no AB, along with standard care debridement and chlorhexidine mouthwash. 16s ribosomal RNA analysis of keystone pathogen Porphyromonas gingivalis and its consortium members Fusobacterium nucleatum and Streptococcus gordonii confirmed the presence of all three species in the reservoirs (subgingival pockets and blood DCs) of PD patients before treatment. Of the three species, P. gingivalis was reduced in both reservoirs 4-6 wk after therapy. Further, the frequency of CD1C(+)CCR6(+) myeloid DCs and IL-1R1 expression on IL-17A(+)FOXP3(+)CD4(+) T cells in PD patients were reduced to healthy control levels. The latter led to decreased IL-1 beta-stimulated Treg plasticity in PD patients and improvement in clinical measures of PD. Overall, we identified an important, albeit short-term, beneficial role of AB therapy in reducing inflammatory DCs and Treg-Th17 plasticity in humans with PD.