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Updated: Mar 30, 2026

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Exploring Protein-Glycan Interactions: Advances in Nuclear Magnetic Resonance
Published on: August 26, 2025
685
Stable Expression and Characterization of an Optimized Mannose Receptor
David J Vigerust1, Sherell Vick2, Virginia L Shepherd1
1Department of Veterans Affairs Medical Center, USA ; Department of Pathology, Microbiology and Immunology, Vanderbilt University School of Medicine, Nashville TN 37212, USA.
Summary
A new human codon-optimized system enables stable expression of the mannose receptor (MR), a key immune cell surface receptor. This system facilitates the study of MR
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- The mannose receptor (MR) is crucial for innate immunity, recognizing diverse pathogens.
- Studying MR function is challenging due to limited human cell line expression and unstable current models.
- Existing plasmid-based MR expression systems yield unstable proteins lacking critical domains.
Purpose of the Study:
- To develop and characterize a novel, human codon-optimized system for stable and functional MR expression.
- To improve mRNA quality and quantity for enhanced MR protein production.
- To validate the functional capacity of the optimized MR system in cellular assays.
Main Methods:
- Human codon optimization of MR gene sequences to enhance mRNA stability and translation.
- Generation of transient and stable MR expression systems using optimized plasmids.
- Confocal microscopy to assess receptor localization.
- Functional assays involving MR-mediated phagocytosis of *S. aureus* in HeLa cells.
Main Results:
- The codon-optimized system produced qualitatively and quantitatively improved MR mRNA.
- Optimized MR demonstrated correct cellular distribution via confocal imaging.
- HeLa cells transfected with the optimized MR plasmid exhibited MR-associated phagocytosis of *S. aureus*.
- MR colocalized with Toll-like receptor 2 (TLR2) and Rab5 during *S. aureus* internalization.
Conclusions:
- A novel, transfection-capable, codon-optimized MR expression system has been successfully developed.
- The optimized MR system exhibits functional characteristics comparable to the wild-type receptor.
- This system provides a robust platform for advancing the study of MR biology and function.
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