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Protein L. A bacterial Ig-binding protein that activates human basophils and mast cells
V Patella1, V Casolaro, L Björck
1Department of Medicine, University of Naples Federico II, Italy.
Abstract:
Peptostreptococcus magnus strain 312 (10(6) to 10(8)/ml), which synthesizes a protein capable of binding to kappa L chains of human Ig (protein L), stimulated the release of histamine from human basophils in vitro. P. magnus strain 644, which does not synthesize protein L, did not induce histamine secretion. Soluble protein L (3 x 10(-2) to 3 micrograms/ml) induced histamine release from human basophils. The characteristics of the release reaction were similar to those of rabbit IgG anti-Fc fragment of human IgE (anti-IgE): it was Ca2(+)- and temperature-dependent, optimal release occurring at 37 degrees C in the presence of 1.0 mM extracellular Ca2+. There was an excellent correlation (r = 0.82; p less than 0.001) between the maximal percent histamine release induced by protein L and that induced by anti-IgE, as well as between protein L and protein A from Staphylococcus aureus (r = 0.52; p less than 0.01). Preincubation of basophils with either protein L or anti-IgE resulted in complete cross-desensitization to a subsequent challenge with the heterologous stimulus. IgE purified from myeloma patients PS and PP (lambda-chains) blocked anti-IgE-induced histamine release but failed to block the histamine releasing activity of protein L. In contrast, IgE purified from myeloma patient ADZ (kappa-chains) blocked both anti-IgE- and protein L-induced releases, whereas human polyclonal IgG selectively blocked protein L-induced secretion. Protein L acted as a complete secretagogue, i.e., it activated basophils to release sulfidopeptide leukotriene C4 as well as histamine. Protein L (10(-1) to 3 micrograms/ml) also induced the release of preformed (histamine) and de novo synthesized mediators (leukotriene C4 and/or PGD2) from mast cells isolated from lung parenchyma and skin tissues. Intradermal injections of protein L (0.01 to 10 micrograms/ml) in nonallergic subjects caused a dose-dependent wheal-and-flare reaction. Protein L activates human basophils and mast cells in vitro and in vivo presumably by interacting with kappa L chains of the IgE isotype.
Insights
Protein L from Peptostreptococcus magnus stimulates histamine release from human basophils and mast cells. This protein interacts with kappa light chains of IgE, acting as a potent secretagogue in vitro and in vivo.
Area of Science:
- Immunology
- Microbiology
Background:
- Peptostreptococcus magnus strain 312 synthesizes protein L, which binds to kappa L chains of human immunoglobulin (Ig).
- Protein L's ability to stimulate histamine release from human basophils was investigated.
Purpose of the Study:
- To determine if protein L from P. magnus induces histamine release from human basophils and mast cells.
- To characterize the mechanism of protein L-induced mediator release.
Main Methods:
- In vitro histamine release assays using human basophils and mast cells stimulated with P. magnus or purified protein L.
- In vivo intradermal injections of protein L in nonallergic subjects.
- Cross-desensitization experiments and mediator analysis (leukotriene C4, PGD2).
Main Results:
- P. magnus strain 312, but not strain 644, induced histamine secretion, correlating with protein L production.
- Soluble protein L induced histamine release from basophils in a calcium- and temperature-dependent manner, similar to anti-IgE.
- Protein L triggered release of histamine, leukotriene C4, and PGD2 from basophils and mast cells, and caused wheal-and-flare reactions in vivo.
- Specific IgE and IgG antibodies blocked protein L-induced histamine release, indicating interaction with kappa L chains.
Conclusions:
- Protein L is a potent activator of human basophils and mast cells, inducing the release of inflammatory mediators.
- The mechanism involves interaction with kappa L chains of IgE, leading to degranulation and mediator synthesis.
- Protein L demonstrates both in vitro and in vivo biological activity, relevant to immune responses.