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Bacterial lipopolysaccharide can enter monocytes via two CD14-dependent pathways
R L Kitchens1, P Wang, R S Munford
1Department of Internal Medicine, University of Texas Southwestern Medical Center, Dallas 75235, USA. RKITCH@mednet.swmed.edu
Abstract:
Host recognition and disposal of LPS, an important Gram-negative bacterial signal molecule, may involve intracellular processes. We have therefore analyzed the initial pathways by which LPS, a natural ligand of glycosylphosphatidylinositol (GPI)-anchored CD14 (CD14-GPI), enters CD14-expressing THP-1 cells and normal human monocytes. Exposure of the cells to hypertonic medium obliterated coated pits and blocked 125I-labeled transferrin internalization, but failed to inhibit CD14-mediated internalization of [3H]LPS monomers or aggregates. Immunogold electron microscope analysis found that CD14-bound LPS moved principally into noncoated structures (mostly tubular invaginations, intracellular tubules, and vacuoles), whereas relatively little moved into coated pits and vesicles. When studied using two-color laser confocal microscopy, internalized Texas Red-LPS and BODIPY-transferrin were found in different locations and failed to overlap completely even after extended incubation. In contrast, in THP-1 cells that expressed CD14 fused to the transmembrane and cytosolic domains of the low-density lipoprotein receptor, a much larger fraction of the cell-associated LPS moved into coated pits and colocalized with intracellular transferrin. These results suggest that CD14 (GPI)-dependent internalization of LPS occurs predominantly via noncoated plasma membrane invaginations that direct LPS into vesicles that are distinct from transferrin-containing early endosomes. A smaller fraction of the LPS enters via coated pits. Aggregation, which greatly increases LPS internalization, accelerates its entry into the nonclathrin-mediated pathway.
Insights
Host cells internalize lipopolysaccharide (LPS), a bacterial molecule, via non-clathrin pathways. This process directs LPS to distinct cellular compartments, separate from transferrin uptake.
Area of Science:
- Immunology
- Cell Biology
- Microbiology
Background:
- Lipopolysaccharide (LPS) is a key Gram-negative bacterial molecule recognized by host cells.
- Glycosylphosphatidylinositol (GPI)-anchored CD14 is a primary receptor for LPS.
- Intracellular processing of LPS is crucial for host immune response.
Purpose of the Study:
- To investigate the initial cellular entry pathways of LPS mediated by CD14.
- To differentiate LPS internalization routes from those of other molecules like transferrin.
- To understand the role of CD14 anchoring in LPS uptake.
Main Methods:
- Utilized THP-1 cells and normal human monocytes expressing CD14.
- Employed hypertonic medium to inhibit clathrin-dependent endocytosis.
- Applied immunogold electron microscopy and confocal microscopy to track LPS and transferrin.
- Investigated LPS internalization in cells expressing a modified CD14 receptor.
Main Results:
- CD14-mediated LPS internalization occurred independently of clathrin-coated pits.
- LPS primarily entered cells via non-coated plasma membrane invaginations, forming distinct intracellular vesicles.
- Internalized LPS did not significantly colocalize with transferrin in early endosomes.
- LPS aggregation enhanced its uptake via the non-clathrin pathway.
Conclusions:
- CD14-dependent LPS internalization predominantly utilizes non-clathrin pathways.
- LPS is directed to intracellular compartments separate from the transferrin endocytic pathway.
- The GPI anchor of CD14 influences the internalization route of LPS.