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Monocyte uptake of polymeric peptidoglycan is bimodal and governed by complement C3 and C4 opsonins
Narcis I. Popescu, Jędrzej Kluza, Megan A. Reidy, Elizabeth Duggan, John D. Lambris, Linda F. Thompson, K. Mark Coggeshall
Narcis I. Popescu, Jędrzej Kluza, Megan A. Reidy, Elizabeth Duggan, John D. Lambris, Linda F. Thompson, K. Mark Coggeshall
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Research Article Immunology Infectious disease

Monocyte uptake of polymeric peptidoglycan is bimodal and governed by complement C3 and C4 opsonins

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Abstract

Peptidoglycans (PGNs) are structural polymers of the bacterial cell wall and a common microbial molecular pattern encountered by the immune system daily. Low levels of PGNs are constitutively present in the systemic circulation in humans and rise during inflammatory pathologies. Since all known PGN sensors are intracellular, PGN internalization is a prerequisite for the initiation of cellular immune responses. Here, we report the mechanisms controlling the recognition and uptake of polymeric PGNs by circulating human mononuclear phagocytes. We found that complement C3 and C4 opsonins govern PGN recognition and internalization, but no single opsonin is indispensable because of multiple uptake redundancies. We observed a bimodal internalization of polymeric PGNs with distinct requirements for complement C4. At low PGN concentrations, C3 mediated PGN recognition by surface receptors while the efficient internalization of PGN polymers critically required C4. Supraphysiologic PGN concentrations triggered a secondary uptake modality that was insensitive to C4 and mediated instead by C3 engagement of complement receptors 1 and 3. To our knowledge, this is the first description of nonoverlapping C3 and C4 opsonophagocytoses working in parallel. Controlling these uptake mechanisms has the potential to modulate PGN clearance or the dysregulated immune responses during bacterial infections.

Authors

Narcis I. Popescu, Jędrzej Kluza, Megan A. Reidy, Elizabeth Duggan, John D. Lambris, Linda F. Thompson, K. Mark Coggeshall

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Figure 1

The role of FCGRs during PGN uptake by primary human monocytes.

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The role of FCGRs during PGN uptake by primary human monocytes.
FITC-lab...
FITC-labeled PGN particles were opsonized, as noted in figure panels, before incubation with PBMCs that were either left untreated (– αFCGRs) or pretreated with FCGR neutralizing Fabs (+ αFCGRs). Changes in the frequencies of PGN+ monocytes are depicted before (A) or after pairwise normalization to uptake occurring in the absence of FCGR Fabs (B). Changes in FITC intensities in PGN+ monocytes are shown before (C, log-transformed gMFI) or after pairwise normalization to uptake in the absence of FCGR Fabs (D). Autofluorescence of unstimulated monocytes (NO PGN) and/or after stimulation with unlabeled PGN are shown for comparison. Data depict individual responses (circles, n = 10), group averages ± SD (bars and whiskers), and potential outliers identified by the Tukey’s method highlighted in red. (A and C) Differences between groups were assessed by RM 2-way ANOVA with Holm-Šídák correction for multiple comparisons. (B and D) After normalization, deviations from 0, denoting statistically significant effects linked with FCGR neutralization, were assessed by Wilcoxon’s signed-rank test (B) or 1-sample t test (D) and are color-embedded within bars according to the legend. Additional comparisons were assessed by Wilcoxon’s matched pairs signed-rank test (B) or paired 2-tailed t tests (D) and displayed graphically (*P <0.05; **P < 0.01; ¶P < 0.001; and ¶¶P < 0.0001). gMFI, geometric mean fluorescence intensity; IVIg, intravenous Ig; RM, repeated measures.

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ISSN 2379-3708

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