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Targeting myeloperoxidase to azurophilic granules in HL-60 cells
Peter Lemansky1, Mireille Gerecitano-Schmidek, Rajesh C Das
1Institut für Physiologische Chemie, Philipps-Universität Marburg, Germany. lemansky@home.staff.uni-marburg.de
Abstract:
Myeloperoxidase (MPO) is a cationic protein and one of the major constituents of azurophilic granules in neutrophils. Here, we examined whether intracellular transport of MPO and serglycin, a chondroitin sulfate (CS)-bearing proteoglycan, is correlated. First, we examined binding of MPO to CS-Sepharose and measured an ionic interaction, which was disrupted by 200-400 mM NaCl. Next, HL-60 promyelocytes were activated with a phorbol ester, which induced an almost complete rerouting of serglycin from the granular to the secretory pathway, concomitant with a similar effect on MPO transport and secretion. We then used the membrane-permeable cross-linker dithiobis(succininmidylpropionate; DSP) after labeling HL-60 cells with [35S]methionine and [35S]cysteine for 19 h. Immunoprecipitation of MPO revealed its cross-linking to high molecular material having the appearance of a proteoglycan in sodium dodecyl sulfate-polyacrylamide gels. This assumption was confirmed by labeling HL-60 cells with [35S]sulfate for 10 min followed by DSP cross-linking and immunoprecipitation. From three granular enzymes immunoprecipitated, only the cationic MPO was cross-linked to [35S]sulfate-labeled serglycin in appreciable quantities, whereas cathepsin D or beta-N-acetylhexosaminidase was not. Thus, intracellular transport of MPO appears to be linked to that of serglycin. Extracts from high buoyant density organelles from human placenta containing MPO activity were subjected to CS-affinity chromatography. Proteins binding to CS were identified by mass spectrometry as MPO, lactoferrin, cathepsin G, and azurocidin/cationic antimicrobial protein of molecular weight 37 kDa, suggesting that serglycin may be a general transport vehicle for the cationic granular proteins of neutrophils.
Insights
Myeloperoxidase (MPO) transport in neutrophils is linked to serglycin, a proteoglycan. This suggests serglycin may serve as a general transport vehicle for cationic granular proteins.
Area of Science:
- Biochemistry
- Cell Biology
- Immunology
Background:
- Myeloperoxidase (MPO) is a key cationic protein in neutrophil azurophilic granules.
- Serglycin is a chondroitin sulfate (CS)-bearing proteoglycan found in these granules.
Purpose of the Study:
- To investigate the correlation between the intracellular transport of MPO and serglycin.
- To determine if serglycin acts as a transport vehicle for MPO and other cationic granular proteins.
Main Methods:
- CS-affinity chromatography to assess MPO binding to CS.
- HL-60 promyelocyte activation to observe MPO and serglycin transport.
- Chemical cross-linking (DSP) followed by immunoprecipitation to identify protein interactions.
- Mass spectrometry to identify proteins binding to CS.
Main Results:
- MPO exhibits ionic interaction with CS, disrupted by NaCl.
- Activation of HL-60 cells rerouted both serglycin and MPO to the secretory pathway.
- MPO was cross-linked to serglycin, confirmed by [35S]sulfate labeling.
- Mass spectrometry identified MPO, lactoferrin, cathepsin G, and azurocidin binding to CS.
Conclusions:
- Intracellular transport of MPO is correlated with that of serglycin.
- Serglycin may function as a general transport vehicle for cationic granular proteins in neutrophils.