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Calreticulin functions as a molecular chaperone in the biosynthesis of myeloperoxidase
W M Nauseef1, S J McCormick, R A Clark
1Department of Medicine, Veterans Administration Medical Center, Iowa City, Iowa.
Abstract:
Myeloperoxidase (MPO), a lysosomal heme protein found exclusively in neutrophils and monocytes, is necessary for efficient oxygen-dependent microbicidal activity. Acquisition of heme by the heme-free MPO precursor apopro-MPO appears to be a prerequisite for its subsequent proteolytic processing and advancement along the biosynthetic pathway to mature MPO. We present data indicating that calreticulin (CRT), a high capacity calcium-binding protein residing in the lumen of the endoplasmic reticulum of a wide variety of cells, interacts specifically with fully glycosylated apopro-MPO. Biosynthetically radiolabeled CRT (60 kDa) and apopro-MPO (90 kDa) were coprecipitated from PLB 985 cells by monospecific antiserum against CRT when the immunoprecipitations were performed either under nondenaturing conditions or following reversible crosslinking. Nonglycosylated MPO precursors synthesized in the presence of tunicamycin did not interact with CRT. The CRT-apopro-MPO interaction was restricted to an early phase of MPO biosynthesis, and CRT did not interact with the later appearing, heme-containing species of MPO, i.e. pro-MPO or the heavy subunit of mature MPO. These data show that CRT participates in the post-translational processing of MPO, perhaps by maintaining apopro-MPO in a conformation competent to accommodate insertion of the heme group. In this general way, CRT shares certain functional properties with the structurally homologous transmembrane calcium-binding endoplasmic reticulum protein calnexin. Both interact with glycosylated biosynthetic precursors of proteins selectively expressed in specialized cells.
Insights
Calreticulin (CRT) binds to the heme-free myeloperoxidase (MPO) precursor, aiding its processing. This interaction is crucial for MPO maturation and microbicidal function.
Area of Science:
- Biochemistry
- Cell Biology
- Immunology
Background:
- Myeloperoxidase (MPO) is essential for neutrophil and monocyte microbicidal activity.
- Heme acquisition is critical for MPO precursor (apopro-MPO) processing and maturation.
- Calreticulin (CRT) is an endoplasmic reticulum protein involved in calcium binding and protein folding.
Purpose of the Study:
- To investigate the interaction between calreticulin (CRT) and myeloperoxidase (MPO) during its biosynthesis.
- To determine the role of CRT in the post-translational modification of MPO.
- To elucidate the specific stage of MPO processing involving CRT.
Main Methods:
- Coprecipitation assays using radiolabeled CRT and apopro-MPO from PLB 985 cells.
- Immunoprecipitation with monospecific antiserum against CRT under nondenaturing and crosslinking conditions.
- Analysis of MPO precursor interaction with CRT in the presence and absence of tunicamycin.
Main Results:
- Calreticulin (CRT) specifically interacts with fully glycosylated apopro-MPO, the heme-free precursor.
- This interaction occurs early in MPO biosynthesis and is not observed with nonglycosylated precursors or later MPO forms.
- CRT does not bind to heme-containing MPO species like pro-MPO or mature MPO.
Conclusions:
- Calreticulin (CRT) plays a role in the post-translational processing of myeloperoxidase (MPO).
- CRT may maintain apopro-MPO in a conformation suitable for heme insertion, facilitating MPO maturation.
- CRT shares functional similarities with calnexin in interacting with glycosylated protein precursors.