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CLIC4 regulates late endosomal trafficking and matrix degradation activity of MMP14 at focal adhesions in RPE cells
Kuo-Shun Hsu1,2, Wataru Otsu1,3, Yao Li4
1Department of Ophthalmology, Weill Medical College of Cornell University, New York, NY, USA.
Abstract:
Dysregulation in the extracellular matrix (ECM) microenvironment surrounding the retinal pigment epithelium (RPE) has been implicated in the etiology of proliferative vitreoretinopathy and age-related macular degeneration. The regulation of ECM remodeling by RPE cells is not well understood. We show that membrane-type matrix metalloproteinase 14 (MMP14) is central to ECM degradation at the focal adhesions in human ARPE19 cells. The matrix degradative activity, but not the assembly, of the focal adhesion is regulated by chloride intracellular channel 4 (CLIC4). CLIC4 is co-localized with MMP14 in the late endosome. CLIC4 regulates the proper sorting of MMP14 into the lumen of the late endosome and its proteolytic activation in lipid rafts. CLIC4 has the newly-identified "late domain" motif that binds to MMP14 and to Tsg101, a component of the endosomal sorting complex required for transport (ESCRT) complex. Unlike the late domain mutant CLIC4, wild-type CLIC4 can rescue the late endosomal sorting defect of MMP14. Finally, CLIC4 knockdown inhibits the apical secretion of MMP2 in polarized human RPE monolayers. These results, taken together, demonstrate that CLIC4 is a novel matrix microenvironment modulator and a novel regulator for late endosomal cargo sorting. Moreover, the late endosomal sorting of MMP14 actively regulates its surface activation in RPE cells.
Insights
Chloride intracellular channel 4 (CLIC4) regulates extracellular matrix remodeling by controlling the sorting and activation of matrix metalloproteinase 14 (MMP14) in retinal pigment epithelium cells.
Area of Science:
- Ophthalmology
- Cell Biology
- Biochemistry
Background:
- Extracellular matrix (ECM) dysregulation in retinal pigment epithelium (RPE) is linked to proliferative vitreoretinopathy and age-related macular degeneration.
- The precise mechanisms of ECM remodeling by RPE cells remain unclear.
Purpose of the Study:
- To elucidate the role of chloride intracellular channel 4 (CLIC4) in regulating ECM remodeling and matrix metalloproteinase 14 (MMP14) activity in RPE cells.
Main Methods:
- Investigated MMP14 localization and activity in human ARPE19 cells.
- Examined CLIC4's interaction with MMP14 and its role in late endosomal sorting using wild-type and mutant CLIC4.
- Assessed the impact of CLIC4 knockdown on MMP2 secretion in polarized RPE monolayers.
Main Results:
- CLIC4 regulates the focal adhesion matrix degradative activity by controlling MMP14 sorting and activation within late endosomes.
- CLIC4, co-localized with MMP14 in late endosomes, facilitates MMP14's proteolytic activation in lipid rafts via its novel late domain.
- CLIC4 knockdown impairs apical MMP2 secretion in polarized RPE cells.
Conclusions:
- CLIC4 is a novel modulator of the RPE matrix microenvironment and a regulator of late endosomal cargo sorting.
- The late endosomal sorting of MMP14 by CLIC4 is critical for its surface activation and subsequent ECM remodeling in RPE cells.
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