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Updated: Jun 4, 2026

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Published on: April 1, 2022
Identification of phosphorylation sites on extracellular corneal epithelial cell maspin
Malathi Narayan1, Shama P Mirza, Sally S Twining
1Department of Biochemistry, Medical College of Wisconsin, Milwaukee, WI, USA.
Abstract:
Maspin, a 42-kDa non-classical serine protease inhibitor (serpin), is expressed by epithelial cells of various tissues including the cornea. The protein localizes to the nucleus and cytosol, and is present in the extracellular space. While extracellular maspin regulates corneal stromal fibroblast adhesion and inhibits angiogenesis during wound healing in the cornea, the molecular mechanism of its extracellular functions is unclear. We hypothesized that identifying post-translational modifications of maspin, such as phosphorylation, may help decipher its mode of action. The focus of this study was on the identification of phosphorylation sites on extracellular maspin, since the extracellular form of the molecule is implicated in several functions. Multi-stage fragmentation MS was used to identify sites of phosphorylation on extracellular corneal epithelial cell maspin. A total of eight serine and threonine phosphorylation sites (Thr50, Ser97, Thr118, Thr157, Ser240, Ser298, Thr310 and Ser316) were identified on the extracellular forms of the molecule. Phosphorylation of tyrosine residues was not detected on extracellular maspin from corneal epithelial cell, in contrast to breast epithelial cells. This study provides the basis for further investigation into the functional role of phosphorylation of corneal epithelial maspin.
Insights
Researchers identified eight novel phosphorylation sites on extracellular maspin in corneal epithelial cells. This discovery aids in understanding maspin
Area of Science:
- Ophthalmology
- Proteomics
- Cell Biology
Background:
- Maspin (serine protease inhibitor) is found in corneal epithelial cells and regulates fibroblast adhesion and angiogenesis.
- The extracellular functions of maspin are not fully understood.
- Post-translational modifications, like phosphorylation, may explain maspin's extracellular mechanisms.
Purpose of the Study:
- To identify phosphorylation sites on extracellular maspin from corneal epithelial cells.
- To investigate the role of maspin phosphorylation in corneal wound healing and extracellular functions.
Main Methods:
- Multi-stage fragmentation mass spectrometry (MS) was employed.
- Extracellular maspin from corneal epithelial cells was analyzed.
Main Results:
- Eight serine and threonine phosphorylation sites were identified: Thr50, Ser97, Thr118, Thr157, Ser240, Ser298, Thr310, and Ser316.
- No tyrosine phosphorylation sites were detected on extracellular corneal maspin.
- This contrasts with findings in breast epithelial cells.
Conclusions:
- This study identifies specific phosphorylation sites on extracellular corneal maspin.
- The findings provide a foundation for future research into the functional significance of maspin phosphorylation.
- Understanding these modifications can elucidate maspin's role in corneal biology.
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