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Specific and azurophilic granules from rabbit polymorphonuclear leukocytes. II. Cell surface localization of granule
Abstract:
The compositional relationship between the cell surface of rabbit polymorphonuclear leukocytes (PMNs) and the membranes of PMN cytoplasmic granules has been investigated. Heterophilic PMNs obtained from peritoneal exudates contained 13 cell surface polypeptides ranging in molecular weight from 220,000 to 12,000 daltons as determined by lactoperoxidase-catalyzed protein iodination and gel electrophoresis. Of these, four polypeptides co-migrated with proteins identified as the major constituents of specific (SpG) and azurophilic (AzG) granule membranes. The most notable of these were cell surface proteins of 145,000 and 96,000 daltons that co-migrated with proteins identified as granule content proteins released from PMNs during exocytosis. Extensive washing did not remove these proteins from the cell surface. Iodination of PMNs after the release of SpG and AzG contents by calcium ionophore- induced exocytosis revealed that there was not a dramatic quantitative change in the proteins on the cell surface. Instead, there were large, quantitative increases in the relative amounts of (125)I that were incorporated into several pre-existing cell surface proteins; all of these cell surface proteins co-migrated as a set with those polypeptides identified as either granule membrane or content proteins. Although nearly all of the major polypeptides of SpG and AzG had counterparts on the cell surface of freshly isolated peritoneal exudates PMNs, there were several polypeptides that were unique to the cell surface. Thus, the PMN has at least three membrane compartments with strikingly different protein compositions.
Insights
Rabbit polymorphonuclear leukocytes (PMNs) share cell surface proteins with their internal granules. This suggests a dynamic relationship between PMN membranes and granule components, crucial for immune cell function.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Polymorphonuclear leukocytes (PMNs) are critical immune cells.
- Understanding the protein composition of PMN cell surfaces and internal granules is essential for elucidating their function.
Purpose of the Study:
- To investigate the compositional relationship between the cell surface of rabbit PMNs and their cytoplasmic granule membranes.
- To identify shared and unique proteins between these cellular compartments.
Main Methods:
- Lactoperoxidase-catalyzed protein iodination of rabbit PMNs.
- Gel electrophoresis to determine molecular weights of cell surface polypeptides.
- Analysis of protein co-migration patterns before and after induced exocytosis.
Main Results:
- Identified 13 cell surface polypeptides in rabbit PMNs.
- Four cell surface polypeptides co-migrated with major proteins of specific (SpG) and azurophilic (AzG) granule membranes.
- Cell surface proteins of 145,000 and 96,000 daltons matched granule content proteins released during exocytosis.
- Exocytosis did not drastically alter cell surface protein profiles but increased incorporation of (125)I into existing proteins that matched granule components.
Conclusions:
- Rabbit PMNs possess cell surface proteins that are also found in their granule membranes and contents.
- These findings indicate a significant compositional overlap and potential functional relationship between the PMN cell surface and internal granule compartments.
- The PMN exhibits at least three distinct membrane compartments with differing protein compositions.