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Updated: Aug 28, 2026

Investigating Mast Cell Secretory Granules; from Biosynthesis to Exocytosis
Published on: January 26, 2015
Alterations in granule matrix and cell surface of focal adhesion kinase-deficient mast cells
Daniel Vial1, Constance Oliver, Maria Célia Jamur
1Receptors and Signal Transduction Section, Oral Infection and Immunity Branch, National Institute of Dental Research, National Institutes of Health, Bethesda, MD 20892, USA.
Abstract:
Focal adhesion kinase (FAK) is a nonreceptor protein tyrosine kinase that plays an important role in many cellular processes and is tyrosine phosphorylated after FcepsilonRI aggregation in mast cells. In mice, null mutation of the fak gene results in a lethal phenotype in which the embryos fail to develop past day 8.5 of gestation. To study the role of FAK in these mast cells, 8.5-day embryos were isolated and placed in culture with IL-3 and stem cell factor (SCF). Although FAK was not required for the development of mast cells in culture, the FAK(-/-) embryo-derived mast cells had several distinct characteristics. Compared with the controls, the mast cells that lack FAK were less metachromatic and by electron microscopy had granules that appeared largely electron lucid, although their histamine content was unchanged. The FAK-deficient mast cells had a reduction in the content of chondroitin/dermatan sulfate, the major glycosaminoglycan component of the granular matrix. The FAK-deficient cells had fewer microvilli that were fused with each other, giving the cell surface a ruffled appearance. There was also a 3-fold increase in the number of cells highly expressing beta(7) integrin. However, signal transduction from the high affinity IgE receptor for the secretion of histamine was similar in the wild-type, heterozygote, and the FAK-deficient cells. The FcepsilonRI-induced tyrosine phosphorylation of paxillin, Crk-associated tyrosine kinase substrate (CAS), and mitogen-activated protein kinase proteins was independent of FAK. These results indicate that FAK plays a role in regulating the glycosaminoglycan content of the secretory granules and influences the cell surface morphology of mast cells.
Insights
Focal adhesion kinase (FAK) regulates mast cell granule content and cell surface structure, though it is not essential for mast cell development or histamine secretion. FAK deficiency impacts glycosaminoglycans and cell morphology.
Area of Science:
- Cell Biology
- Immunology
- Biochemistry
Background:
- Focal adhesion kinase (FAK) is a crucial protein tyrosine kinase involved in cellular processes.
- FAK is tyrosine phosphorylated upon FcepsilonRI aggregation in mast cells.
- FAK null mutations in mice lead to embryonic lethality around day 8.5.
Purpose of the Study:
- To investigate the role of FAK in mast cell development and function.
- To characterize FAK-deficient mast cells derived from early-stage embryos.
Main Methods:
- Culture of 8.5-day mouse embryos with IL-3 and SCF to derive mast cells.
- Comparative analysis of FAK-deficient and wild-type mast cells using electron microscopy and biochemical assays.
- Assessment of FcepsilonRI-induced signaling pathways.
Main Results:
- FAK is not essential for mast cell development in vitro.
- FAK-deficient mast cells exhibit reduced metachromasia and electron-lucent granules.
- A decrease in chondroitin/dermatan sulfate content and altered cell surface morphology (ruffled appearance, fused microvilli) were observed in FAK-deficient cells.
- Increased expression of beta(7) integrin was noted in FAK-deficient mast cells.
- Histamine secretion and FcepsilonRI-induced signaling (tyrosine phosphorylation of paxillin, CAS, MAPK) were FAK-independent.
Conclusions:
- FAK plays a significant role in regulating the glycosaminoglycan content of mast cell secretory granules.
- FAK influences mast cell surface morphology.
- FAK is not required for mast cell development, histamine content, or FcepsilonRI-mediated signaling pathways involved in secretion.
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