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Activation of Paneth cell alpha-defensins in mouse small intestine
Tokiyoshi Ayabe1, Donald P Satchell, Patrizia Pesendorfer
1Department of Pathology, College of Medicine, University of California, Irvine, California 92697-4800, USA.
Abstract:
Paneth cells in small intestine crypts secrete microbicidal alpha-defensins, termed cryptdins, as components of enteric innate immunity. The bactericidal activity of cryptdins requires proteolytic activation of precursors by matrix metalloproteinase-7 (MMP-7; matrilysin) (Wilson, C. L., Ouellette, A. J., Satchell, D. P., Ayabe, T., Lopez-Boado, Y. S., Stratman, J. L., Hultgren, S. J., Matrisian, L. M., and Parks, W. C. (1999) Science 286, 113-117). Here, we report on the intracellular processing of cryptdin proforms in mouse Paneth cells. Peptide sequencing of MMP-7 digests of purified natural procryptdins identified conserved cleavage sites in the proregion between Ser(43) and Val(44) as well as at the cryptdin peptide N terminus between Ser(58) and Leu(59). Immunostaining co-localized precursor prosegments and mature cryptdin peptides to Paneth cell granules, providing evidence of their secretion. Extensive MMP-7-dependent procryptdin processing occurs in Paneth cells, as shown by Western blot analyses of intestinal crypt proteins and proteins from granule-enriched subcellular fractions. The addition of soluble prosegments to in vitro antimicrobial peptide assays inhibited the bactericidal activities of cryptdin-3 and -4 in trans, suggesting possible cytoprotective effects by prosegments prior to secretion. Levels of activated cryptdins were normal in small bowel of germ-free mice and in sterile implants of fetal mouse small intestine grown subcutaneously. Thus, the initiation of procryptdin processing by MMP-7 does not require direct bacterial exposure, and the basal MMP-7 content of germ-free Paneth cells is sufficient to process and activate alpha-defensin precursors. MMP-7-dependent procryptdin activation in vivo provides mouse Paneth cells with functional peptides for apical secretion into the small intestine lumen.
Insights
Matrix metalloproteinase-7 (MMP-7) processes alpha-defensin precursors (cryptdins) within mouse Paneth cells. This activation occurs independently of bacteria, ensuring functional antimicrobial peptides are secreted into the small intestine.
Area of Science:
- Immunology
- Cell Biology
- Gastroenterology
Background:
- Paneth cells in the small intestine secrete antimicrobial alpha-defensins (cryptdins) essential for innate immunity.
- Proteolytic activation by matrix metalloproteinase-7 (MMP-7) is crucial for cryptdin bactericidal activity.
Purpose of the Study:
- To investigate the intracellular processing of cryptdin proforms within mouse Paneth cells.
- To elucidate the role of MMP-7 in the activation and secretion of cryptdins.
Main Methods:
- Peptide sequencing of MMP-7 digests of purified procryptdins.
- Immunostaining to co-localize cryptdin precursors and mature peptides.
- Western blot analysis of intestinal crypt and granule-enriched subcellular fractions.
Main Results:
- Identified conserved MMP-7 cleavage sites in procryptdin proregions and at the N terminus.
- Co-localization of prosegments and mature cryptdins in Paneth cell granules confirmed secretion.
- MMP-7-dependent processing occurred extensively within Paneth cells, independent of bacterial exposure.
Conclusions:
- Mouse Paneth cells process and activate alpha-defensin precursors intracellularly via MMP-7.
- Basal MMP-7 levels in Paneth cells are sufficient for procryptdin activation, even in germ-free conditions.
- This MMP-7-dependent activation ensures the secretion of functional antimicrobial peptides into the small intestine lumen.