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Published on: October 30, 2015
Calreticulin promotes folding of functional human leukocyte antigen class I molecules in vitro
Slobodan Culina1, Grégoire Lauvau, Brigitte Gubler
1Institut National de la Santé et de la Recherche Médicale Unité 580, Université René Descartes Paris V, 75015 Paris, France.
Insights
Calreticulin aids in folding HLA class I molecules, promoting peptide binding at low temperatures. However, it does not maintain the peptide-receptive state, suggesting other components are involved in MHC class I assembly.
Area of Science:
- Immunology
- Molecular Biology
- Protein Folding
Background:
- MHC class I assembly requires chaperones like calnexin, calreticulin, and Erp57, along with tapasin.
- Calreticulin is known to interact with monoglucosylated MHC class I heavy chains and prevent aggregation.
- The exact role of calreticulin in MHC class I assembly is not fully understood.
Purpose of the Study:
- To investigate the effect of calreticulin on the peptide binding capacity of HLA class I molecules.
- To elucidate the specific function of calreticulin during the MHC class I assembly process.
Main Methods:
- Utilized a soluble single-chain HLA-A2/beta(2)-microglobulin (A2SC) molecule for experiments.
- Assessed calreticulin's effect on A2SC aggregation and peptide binding during refolding and co-expression.
- Incubated denatured A2SC with calreticulin at low temperatures (4°C) and physiological temperatures.
Main Results:
- Calreticulin inhibited A2SC aggregation in insect cells and at elevated temperatures.
- Calreticulin significantly enhanced peptide binding capacity during refolding of denatured A2SC at 4°C.
- Calreticulin did not prevent the rapid loss of peptide binding capacity at physiological temperatures.
Conclusions:
- Calreticulin promotes the folding of HLA class I molecules, enabling spontaneous peptide acquisition at low temperatures.
- Calreticulin does not induce or maintain the peptide-receptive state of the MHC class I binding site.
- Other components of the MHC class I loading complex likely facilitate the peptide-receptive state, and the A2SC system can aid their identification.
Abstract:
The assembly of MHC class I molecules with beta(2)-microglobulin and peptides is assisted by the housekeeping chaperones calnexin, calreticulin, and Erp57 and the dedicated accessory protein, tapasin. Tapasin and calreticulin are essential for efficient MHC class I assembly, but their precise action during class I assembly remains to be elucidated. Previous in vitro studies have demonstrated that the lectin calreticulin interacts with monoglucosylated MHC class I heavy chains, whatever their state of assembly with light chains and peptide, and inhibits their aggregation above physiological temperature. We used a soluble single chain HLA-A2/beta(2)-microglobulin molecule, A2SC, to study the effect of calreticulin on the peptide binding capacity of HLA class I molecules. Calreticulin inhibited the formation of A2SC aggregates both when co-expressed in insect cells and during incubations at elevated temperature. Calreticulin dramatically enhanced acquisition of peptide binding capacity when added to denatured A2SC molecules during refolding at 4 degrees C. However, it had no effect on the rapid loss of A2SC peptide binding capacity at physiological temperature. We conclude that calreticulin promotes the folding of HLA class I molecules to a state in which, at low temperature, they spontaneously acquire peptide binding capacity. However, it does not induce or maintain a peptide-receptive state of the class I-binding site, which is likely to be promoted by one or several other components of the class I loading complexes. By being amenable to complementation with additional proteins, the described system should be useful for identification of these components.
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