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The monocyte differentiation antigen, CD14, is anchored to the cell membrane by a phosphatidylinositol linkage
1Cellular and Molecular Biology Unit, Hospital for Joint Diseases, New York 10003.
Abstract:
CD14 is a myeloid differentiation Ag expressed primarily on peripheral blood monocytes and macrophages. Although its function is unknown, the CD14 gene maps to a region encoding several myeloid growth factors and receptors. Analysis of the CD14 protein sequence deduced from the cDNA shows that although the CD14 protein contains a characteristic leader peptide, it lacks a characteristic transmembrane region, suggesting that CD14 may be anchored to the membrane via glycosylphosphatidylinositol (PI). Treatment of monocytes as well as a CD14-expressing neuroglioma cell line with PI-phospholipase C removed CD14 from the cell surface. Furthermore, monocytes from a patient with paroxysmal nocturnal hemoglobinuria, a disease characterized by lack of expression of other PI-linked proteins, failed to express CD14. Interestingly, the CD14-expressing neuroglioma cell line, which had been transfected with a single CD14 cDNA, released a soluble form of CD14 into the supernatant. Soluble forms of CD14 have previously been observed in serum of normal individuals and in culture supernatants of CD14+ cells. Biosynthetic experiments reveal that this soluble form of CD14 (48 kDa), which is smaller than the form released from the membrane by PI-phospholipase C (53 kDa), does not contain ethanolamine, the first constitutent of the PI-anchoring system. These studies demonstrate that CD14 is a member of the family of PI-anchored proteins and suggest that soluble forms of CD14 represent molecules that completely lack the PI-anchoring system.
Insights
CD14 is a cell surface protein anchored by glycosylphosphatidylinositol (PI). Studies show CD14 is a PI-anchored protein, and soluble forms lack this anchoring system.
Area of Science:
- Immunology
- Molecular Biology
- Cell Biology
Background:
- CD14 is a myeloid differentiation antigen found on monocytes and macrophages.
- Its precise function remains unknown, but its gene is located near those for myeloid growth factors.
- The CD14 protein sequence suggests it may be anchored to the cell membrane via glycosylphosphatidylinositol (PI).
Purpose of the Study:
- To investigate the membrane anchoring mechanism of CD14.
- To determine if CD14 is a glycosylphosphatidylinositol (PI)-anchored protein.
- To characterize the soluble forms of CD14 observed in biological fluids.
Main Methods:
- Treatment of CD14-expressing cells (monocytes and a neuroglioma cell line) with PI-phospholipase C.
- Analysis of CD14 expression in monocytes from patients with paroxysmal nocturnal hemoglobinuria (PNH).
- Biosynthetic experiments to analyze the structure of soluble CD14.
Main Results:
- PI-phospholipase C treatment removed CD14 from the cell surface, supporting PI-anchoring.
- Monocytes from PNH patients, lacking other PI-linked proteins, also failed to express CD14.
- A soluble form of CD14 released by a transfected cell line lacked ethanolamine, indicating a complete absence of the PI-anchoring system.
Conclusions:
- CD14 is confirmed to be a member of the glycosylphosphatidylinositol (PI)-anchored protein family.
- Soluble CD14 forms found in serum and cell supernatants likely represent molecules entirely lacking the PI-anchoring system.
- These findings provide insights into CD14's cell surface association and release mechanisms.