| Literature DB >> 20161736 |
Clett Erridge1, Sylvia H Duncan, Stefan Bereswill, Markus M Heimesaat.
Abstract
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Year: 2010 PMID: 20161736 PMCID: PMC2817728 DOI: 10.1371/journal.pone.0009125
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Figure 1Effect of T. gondii-induced ileitis on PAMP profile of murine ileal contents.
HEK-293 cells were transfected with CD14, NF-κB sensitive reporter construct and TLR2, TLR4/MD2 or TLR5 and challenged with indicated concentrations of Pam3CSK4, E. coli LPS or S. typhimurium flagellin, respectively, for 18 h prior to measurement of reporter activation. Typical standard curves are shown with line-fit equations and coefficients of correlation (A–C). For measurement of PAMP-equivalent concentrations in test samples, appropriate dilutions of samples were performed until fold-induction of reporter was within the range of the standard curve. SFE was then prepared from ileal contents of uninfected control mice (n = 3) or from mice in which inflammation of the small intestine was induced by oral administration of T. gondii (n = 5). The relative abundances of Pam3CSK4- (D), LPS- (E) and flagellin-equivalents (F) present in each SFE sample were quantified and are presented as relative concentrations of Pam3CSK4, E. coli LPS or S. typhimurium flagellin equivalents.
Figure 2Effect of DSS-induced colitis on murine colonic PAMP profile.
SFE was prepared from colon contents of untreated control mice (n = 3) or from mice in which colonic inflammation was induced by 7 days DSS-treatment (n = 5). The relative abundances of Pam3CSK4- (A), LPS- (B) and flagellin-equivalents (C) present in each SFE sample were quantified as described in the Materials and Methods.
Figure 3Relative abundance of PAMP-equivalents in normal human faecal flora.
The relative abundances of PAMP-equivalents specific for TLR2 (A), TLR4 (B) and TLR5 (C) were measured in the heat-killed faecal flora from six healthy human subjects (insoluble fraction), or in SFE (soluble fraction) from the same subjects, using TLR-transfectants as described in the Materials and Methods.
Figure 4Biological activity of soluble PAMPs present in normal human faeces.
(A) RAW macrophages were challenged with 1, 10 or 100 µg/ml SFE of six healthy subjects and TNF-α was measured at 4 h. Mean +/− SD shown. (B) RAW macrophages were challenged with 20 µg/ml sterile-filtered extract (SFE) of 5 healthy human volunteers. Degradation of IκBα and phosphorylation p38 MAPK were examined at 30 minutes by western blot. (C) SFE (20 µg total protein) of three healthy subjects was separated by non-reducing SDS-PAGE and PAMPs were eluted from gel-slices corresponding to indicated molecular weight ranges in PBS. HEK-293 cells transfected with TLR2, TLR4/MD2 or TLR5 were challenged with each eluate diluted 1:25 in culture medium. Responses are displayed as mean fold induction of NF-κB reporter (pELAM) +/− SD. ** P<0.01 vs cells cultured in medium alone.
Figure 5Characterisation of TLR-stimulants present in human soluble faecal extract.
(A) Human SFE (10 µg/ml) was treated with immobilised lipase for 18 h at 37°C, and then assayed for potential to stimulate TLR2 signalling in HEK-293-TLR2 cells. (B) Human SFE (10 µg/ml), or 100 ng/ml E. coli LPS, was treated with 10 µg/ml polymyxin-B or 1 µg/ml lipid-IVa for 10 minutes before addition to HEK-293-TLR4 cells to measure capacity to induce TLR4-signalling. (C) Human SFE (10 µg/ml), or 500 ng/ml S. typhimurium flagellin was treated with proteinase-K for 4 h before enzyme denaturation at 80°C for 10 minutes, before application to HEK-293-TLR5 cells to measure capacity to induce TLR5-signalling.
Figure 6Profiles of TLR-stimulation Induced by representative gut bacterial strains.
Heat-killed bacteria of indicated species were applied to HEK-293 cells transfected with CD14, NF-κB sensitive reporter construct and TLR2, TLR4/MD2 or TLR5 at a concentration of ∼107 cells per ml. Responses are displayed as mean fold induction of NF-κB reporter (pELAM) +/− SD relative to cells cultured in medium alone. * P<0.05 vs medium alone.
Figure 7Soluble PAMP secretion by Gram-positive and Gram-negative organisms.
(A) TNF-α release was measured from RAW macrophages exposed to whole heat-killed bacteria from a panel of representatives (Gram -ve: E. coli (Ec), S. typhimurium (St), P. aeruginosa (Pa), B. fragilis (Bf); Gram +ve: B. bifidum (Bb), E. faecalis (Ef), L. plantarum (Lp), S. aureus (Sa)), at a concentration of ∼107 bacteria per ml. (B) Serial ten-fold dilutions of sterile-filtered supernatants from each bacterial culture were made in DMEM/10% FCS, added to RAW macrophages in triplicate and TNF-α release was measured at 4 h. (C) HEK-293 cells transfected with TLR4/MD2 or TLR5, were challenged with sterile filtered growth supernatants (1∶100). (D) HEK-293 cells transfected with TLR2 were challenged with 10-fold serial dilutions of each sterile-filtered supernatant. Data shown are representative of at least three independent experiments. * P<0.01 vs cells cultured in medium alone.