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Published on: May 8, 2012
Endothelial dysfunction is a superinducer of syndecan-4: fibrogenic role of its ectodomain
Mark Lipphardt1,2, Jong W Song1,3, Brian B Ratliff1
1Renal Research Institute and Departments of Medicine, Pharmacology, and Physiology, New York Medical College, Touro University, Valhalla, New York.
Abstract:
Syndecan-4 (Synd4) is a member of the membrane-spanning, glycocalyx-forming proteoglycan family. It has been suggested that Synd4 participates in renal fibrosis. We compared wild-type and fibrosis-prone endothelial sirtuin 1-deficient (Sirt1endo-/-) mice, the latter being a model of global endothelial dysfunction. We performed mass spectrometry analysis, which revealed that Synd4 was highly enriched in the secretome of renal microvascular endothelial cells obtained from Sirt1endo-/- mice upon stimulation with transforming growth factor-β1; notably, all detectable peptides were confined to the ectodomain of Synd4. Elevated Synd4 was due to enhanced NF-κB signaling in Sirt1endo-/- mice, while its shedding occurred as a result of oxidative stress in Sirt1 deficiency. Synd4 expression was significantly enhanced after unilateral ureteral obstruction compared with contralateral kidneys. Furthermore, hyperplasia of renal myofibroblasts accompanied by microvascular rarefaction and overexpression of Synd4 were detected in Sirt1endo-/- mice. The ectodomain of Synd4 acted as a chemoattractant for monocytes with higher levels of macrophages and higher expression levels of Synd4 in the extracellular matrix of Sirt1endo-/- mice. In vitro, ectodomain application resulted in generation of myofibroblasts from cultured renal fibroblasts, while in vivo, subcapsular injection of ectodomain increased interstitial fibrosis. Moreover, the endothelial glycocalyx was reduced in Sirt1endo-/- mice, highlighting the induction of Synd4 occurring in parallel with the depletion of its intact form and accumulation of its ectodomain in Sirt1endo-/- mice. On the basis of our experimental results, we propose that it is the Synd4 ectodomain per se that is partially responsible for fibrosis in unilateral ureteral obstruction, especially when it is combined with endothelial dysfunction. NEW & NOTEWORTHY Our findings suggest that endothelial dysfunction induces the expression of syndecan-4 via activation of the NF-κB pathway. Furthermore, we show that syndecan-4 is shed to a greater amount because of increased oxidative stress in dysfunctional endothelial cells and that the release of the syndecan-4 ectodomain leads to tubulointerstitial fibrosis.
Insights
Endothelial dysfunction increases syndecan-4 (Synd4) expression via NF-κB signaling and oxidative stress. The released Synd4 ectodomain promotes renal fibrosis, particularly in conditions like unilateral ureteral obstruction.
Area of Science:
- Renal pathophysiology
- Endothelial biology
- Proteoglycan signaling
Background:
- Syndecan-4 (Synd4) is implicated in renal fibrosis.
- Endothelial dysfunction is a key factor in kidney disease progression.
- Sirtuin 1 (Sirt1) deficiency in endothelial cells models global endothelial dysfunction.
Purpose of the Study:
- To investigate the role of Synd4 in renal fibrosis, particularly in the context of endothelial dysfunction.
- To elucidate the mechanisms by which endothelial dysfunction influences Synd4 expression and shedding.
- To determine the contribution of Synd4 ectodomain to tubulointerstitial fibrosis.
Main Methods:
- Comparison of wild-type and Sirt1-deficient (Sirt1endo-/-) mice.
- Mass spectrometry to analyze the secretome of renal microvascular endothelial cells.
- In vitro studies using cultured renal fibroblasts and in vivo subcapsular injections of Synd4 ectodomain.
Main Results:
- Synd4 was highly enriched in the secretome of Sirt1endo-/- renal microvascular endothelial cells, with peptides confined to the ectodomain.
- Elevated Synd4 expression was linked to enhanced NF-κB signaling and increased oxidative stress in Sirt1 deficiency.
- Synd4 ectodomain promoted myofibroblast generation in vitro and increased interstitial fibrosis in vivo, accompanied by microvascular rarefaction and endothelial glycocalyx reduction.
Conclusions:
- Endothelial dysfunction induces Synd4 expression via NF-κB activation and promotes its shedding through oxidative stress.
- The released Synd4 ectodomain acts as a chemoattractant for monocytes and contributes to myofibroblast generation.
- Synd4 ectodomain plays a significant role in driving tubulointerstitial fibrosis, especially when combined with endothelial dysfunction.
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