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Receptor-recognized alpha 2-macroglobulin-methylamine elevates intracellular calcium, inositol phosphates and cyclic
U K Misra1, C T Chu, D S Rubenstein
1Department of Pathology, Duke University Medical Center, Durham, NC 27710.
Abstract:
Human plasma alpha 2-macroglobulin (alpha 2M) is a tetrameric proteinase inhibitor, which undergoes a conformational change upon reaction with either a proteinase or methylamine. As a result, a receptor recognition site is exposed on each subunit of the molecule enabling it to bind to its receptors on macrophages. We have used Fura-2-loaded murine peritoneal macrophages and digital video fluorescence microscopy to examine the effects of receptor binding on second messenger levels. alpha 2M-methylamine caused a rapid 2-4-fold increase in intracellular Ca2+ concentration ([Ca2+]i) within 5 s of binding to receptors. The agonists induced a focal increase in [Ca2+]i that spread out to other areas of the cell. The increase in [Ca2+]i was dependent on the alpha 2M-methylamine concentration and on the extracellular [Ca2+]. Both sinusoidal and transitory oscillations were observed, which varied from cell to cell. Neither alpha 2M nor boiled alpha 2M-methylamine, forms that are not recognized by the receptor, affected [Ca2+]i in peritoneal macrophages under identical conditions of incubation. The alpha 2M-methylamine-induced rise in [Ca2+]i was accompanied by a rapid and transient increase in macrophage inositol phosphates, including inositol tris- and tetrakis-phosphates. Native alpha 2M did not stimulate a rise in inositol phosphates. Finally, binding of alpha 2M-methylamine to macrophages increased cyclic AMP transiently. Thus receptor-recognized alpha-macroglobulins behave as agonists whose receptor binding causes stimulation of signal transduction pathways.
Insights
Receptor binding of activated alpha-2-macroglobulin (alpha 2M) triggers rapid increases in intracellular calcium and inositol phosphates in macrophages. This indicates that alpha 2M acts as a signaling agonist upon receptor recognition.
Area of Science:
- Biochemistry
- Cell Biology
- Immunology
Background:
- Human plasma alpha-2-macroglobulin (alpha 2M) is a proteinase inhibitor.
- Conformational changes expose receptor recognition sites on alpha 2M upon reaction with proteinases or methylamine.
- These changes enable alpha 2M binding to macrophage receptors.
Purpose of the Study:
- To investigate the effects of alpha 2M receptor binding on second messenger levels in macrophages.
- To determine if receptor-recognized alpha 2M acts as a signaling agonist.
Main Methods:
- Utilized Fura-2-loaded murine peritoneal macrophages.
- Employed digital video fluorescence microscopy to monitor intracellular calcium ([Ca2+]i).
- Measured inositol phosphates and cyclic AMP levels.
Main Results:
- Alpha-2-macroglobulin-methylamine (alpha 2M-methylamine) induced a rapid, concentration-dependent increase in [Ca2+]i.
- The calcium increase was dependent on extracellular calcium and involved oscillations.
- Alpha 2M-methylamine also triggered transient increases in inositol phosphates and cyclic AMP, while native alpha 2M did not.
- Inactive alpha 2M forms did not affect second messenger levels.
Conclusions:
- Receptor-recognized alpha-macroglobulins function as agonists.
- Binding to macrophage receptors stimulates intracellular signal transduction pathways.
- This mechanism highlights a novel role for alpha 2M in cellular communication.