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The macrophage cell surface glycoprotein F4/80 is a highly glycosylated proteoglycan
1Department of Microbiology and Immunology, University of British Columbia, Vancouver, Canada.
Abstract:
Molecules whose expression is limited to particular leukocyte populations are of interest since they may perform unique functions for these cells. We therefore examined the biochemical nature of the F4/80 molecule, which is expressed solely on macrophage and dendritic cell subpopulations. Our study clearly indicates that post-translational modifications, which can influence both a protein's structural and functional features, constitute a major component of the 160-kDa cell-surface F4/80 molecule. The F4/80 molecule is synthesized as a single polypeptide chain which acquires numerous intramolecular disulfide bonds and requires an extended time period (T1/2 = 60 min) for transport to an endoglycosidase H-resistant form. The F4/80 molecule contains extensive N-linked glycosylation which contributes approximately 40 kDa to the mature molecule. The N-linked carbohydrates are of the branched, complex type, containing repeating N-acetylglycosamine or N-acetyllactosamine units which mediate the reactivity of the F4/80 molecule with Datura stramonium lectin. O-linked glycosylation is also present and contributes approximately 10 kDa to the F4/80 molecule. Furthermore, the sialic acid modifications of the F4/80 molecule are primarily through alpha 2-6 linkages to galactose. Finally, we demonstrate that the F4/80 molecule is a proteoglycan modified by chondroitin sulfate glycosaminoglycans. In addition to clarifying the nature of the F4/80 molecule biochemically, these post-translational modifications have specific implications for molecular recognition processes. We conclude that the modifications of the F4/80 molecule may mediate cell-cell recognition, cell adhesion, or ligand binding independently of the F4/80 molecule protein core.
Insights
The F4/80 molecule on macrophages and dendritic cells undergoes significant post-translational modifications, including glycosylation and chondroitin sulfate addition. These modifications are crucial for the molecule's function in cell recognition and adhesion.
Area of Science:
- Biochemistry
- Immunology
- Cell Biology
Background:
- Molecules specific to leukocyte subsets are key to understanding unique cellular functions.
- The F4/80 molecule is exclusively expressed on macrophage and dendritic cell subpopulations.
Purpose of the Study:
- To elucidate the biochemical nature of the F4/80 molecule.
- To investigate the role of post-translational modifications in F4/80 molecule structure and function.
Main Methods:
- Analysis of protein synthesis and transport kinetics.
- Characterization of N-linked and O-linked glycosylation.
- Identification of sialic acid linkages and proteoglycan modifications.
Main Results:
- F4/80 is a 160-kDa glycoprotein synthesized as a single chain, with extensive N-linked glycosylation (approx. 40 kDa) and O-linked glycosylation (approx. 10 kDa).
- Modifications include complex N-linked carbohydrates, alpha 2-6 sialic acid linkages, and chondroitin sulfate glycosaminoglycans, indicating F4/80 is a proteoglycan.
- The molecule requires 60 minutes for transport to an endoglycosidase H-resistant form, suggesting complex processing.
Conclusions:
- Post-translational modifications significantly contribute to the F4/80 molecule's mature structure and biochemical properties.
- These modifications are critical for mediating F4/80-dependent molecular recognition, cell-cell adhesion, and ligand binding.
- Understanding F4/80's modifications provides insights into macrophage and dendritic cell biology and immune responses.