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Updated: Aug 9, 2026

Investigating Mast Cell Secretory Granules; from Biosynthesis to Exocytosis
Published on: January 26, 2015
Stem cell factor is localized in, released from, and cleaved by human mast cells
A de Paulis1, G Minopoli, E Arbustini
1Division of Clinical Immunology and Allergy, Department of Biochemistry and Medical Biotechnology, University of Naples Federico II, Italy.
Insights
Stem cell factor (SCF) is stored in human mast cells and released upon immune challenge. Cleavage of SCF by chymase generates a biologically active form that influences mast cell function.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Stem cell factor (SCF) is a key regulator of human mast cell growth and function.
- Mast cells play crucial roles in allergic responses and immune modulation.
Purpose of the Study:
- To investigate the storage, release, and functional activity of stem cell factor (SCF) in human mast cells.
- To identify the specific cleavage products of SCF and their effects on mast cells.
Main Methods:
- Immunogold labeling to detect SCF localization in mast cells.
- Challenge assays with anti-IgE to measure SCF and histamine release.
- High-performance liquid chromatography (HPLC) and mass spectrometry (MS) for SCF cleavage analysis.
- Western blot to confirm SCF cleavage products.
Main Results:
- SCF is stored in secretory granules of human mast cells and released upon immune activation.
- SCF release is rapid, with a subsequent decline, distinct from histamine release kinetics.
- Recombinant SCF1-166 is cleaved by chymase to SCF1-159, which retains biological activity on mast cells.
- Other proteases also cleave SCF into various species with yet unknown functions.
Conclusions:
- Human mast cells store and immunologically release stem cell factor (SCF).
- Chymase-mediated cleavage of SCF to SCF1-159 preserves its mast cell-activating and chemotactic properties.
- Further research is needed to elucidate the biological roles of other SCF cleavage products.
Abstract:
Stem cell factor (SCF) is the most important cytokine regulating human mast cell growth and functions. The immunogold technique showed SCF in the secretory granules of skin mast cells and in lung parenchymal mast cells (HLMC). Immunoreactive SCF (iSCF) was detected in cell lysates of HLMC, but not in basophils; iSCF and histamine were detected in supernatants of HLMC 3 min after challenge with anti-FcepsilonRI or anti-IgE, and iSCF in supernatants rapidly declined after 30 min, whereas histamine remained unchanged for 120 min. HPLC and electrospray mass spectrometry (ES/MS) analysis of recombinant human SCF1-166 (18,656. 9 +/- 0.9 Da) treated with chymase showed a polypeptide of 17,977.1 +/- 0.6 Da and a minor component of 697.4 +/- 0.1 Da generated by specific cleavage at Phe159. SCF1-166 and SCF1-159 similarly activated HLMC, potentiated anti-IgE-induced activation of these cells, and stimulated HLMC chemotaxis. SCF159-166 had no effect on mast cells. Western blot analysis of supernatants of anti-IgE-activated HLMC incubated with recombinant human SCF1-166 showed that SCF1-166 was rapidly cleaved to SCF1-159 and SCF1-144. Experiments with supernatants of anti-IgE-activated HLMC incubated with SCF1-166 yielded similar results. In conclusion, SCF is stored in mast cell secretory granules and is immunologically released by human mast cells. SCF1-166 is rapidly and specifically cleaved to SCF1-159 by chymase, which retains its biological effect on mast cells. SCF is also cleaved by other proteases to several SCF species whose possible biological activities remain to be established.
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