4.6 Article

ADAM17 mediates ectodomain shedding of the soluble VLDL receptor fragment in the retinal epithelium

期刊

JOURNAL OF BIOLOGICAL CHEMISTRY
卷 297, 期 4, 页码 -

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ELSEVIER
DOI: 10.1016/j.jbc.2021.101185

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资金

  1. National Institutes of Health [EY019309, EY012231, EY028949, EY032930, EY032931]
  2. Diabetic Animal Core and Histology and Image Core of diabetic COBRE [GM122744]
  3. NEI [EY021725]

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This study demonstrates that ADAM17 is responsible for shedding the soluble ectodomain of VLDLR in human retinal pigment epithelium cells, which plays anti-inflammatory and anti-angiogenic roles through inhibition of Wnt signaling. Inhibition of ADAM17 reduces sVLDLR levels in ocular tissues, suggesting it as a potential therapeutic target for disorders associated with dysregulation of Wnt signaling.
Very low-density lipoprotein receptor (VLDLR) is a multi-functional transmembrane protein. Beyond the function of the full-length VLDLR in lipid transport, the soluble ectodomain of VLDLR (sVLDLR) confers anti-inflammatory and anti-angiogenic roles in ocular tissues through inhibition of canonical Wnt signaling. However, it remains unknown how sVLDLR is shed into the extracellular space. In this study, we present the first evidence that a disintegrin and metalloprotease 17 (ADAM17) is responsible for sVLDLR shedding in human retinal pigment epithelium cells using pharmacological and genetic approaches. Among selected proteinase inhibitors, an ADAM17 inhibitor demonstrated the most potent inhibitory effect on sVLDLR shedding. siRNA-mediated knockdown or CRISPR/Cas9-mediated KO of ADAM17 diminished, whereas plasmid-mediated overexpression of ADAM17 promoted sVLDLR shedding. The amount of shed sVLDLR correlated with an inhibitory effect on the Wnt signaling pathway. Consistent with these in vitro findings, intravitreal injection of an ADAM17 inhibitor reduced sVLDLR levels in the extracellular matrix in the mouse retina. In addition, our results demonstrated that ADAM17 cleaved VLDLR only in cells coexpressing these proteins, suggesting that shedding occurs in a cis manner. Moreover, our study demonstrated that aberrant activation of Wnt signaling was associated with decreased sVLDLR levels, along with down-regulation of ADAM17 in ocular tissues of an age-related macular degeneration model. Taken together, our observations reveal the mechanism underlying VLDLR cleavage and identify a potential therapeutic target for the treatment of disorders associated with dysregulation of Wnt signaling.

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