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Imbalance of the Vanin-1 Pathway in Systemic Sclerosis
Niloufar Kavian1, Souad Mehlal2, Wioleta Marut2
1Université Paris Descartes, Sorbonne Paris-Cité, Faculté de Médecine, Institut Cochin INSERM U1016 et Laboratoire d'Immunologie Biologique, Assistance Publique Hôpitaux de Paris Hôpital Cochin, 75679 Paris Cedex 14, France; niloufar.kavian@cch.aphp.fr.
Abstract:
Systemic sclerosis (SSc) is an autoimmune disease characterized by fibrosis of the skin and visceral organs and vascular alterations. SSc pathophysiology involves systemic inflammation and oxidative stress. Because the vanin-1 gene (vnn1) encodes an enzyme with pantetheinase activity that converts vasculoprotective pantethine into profibrotic pantothenic acid and pro-oxidant cystamine, we tested this pathway in the pathophysiology of SSc. Activation of the vanin-1/pantetheinase pathway was investigated in wild-type BALB/c mice with hypochlorous acid (HOCl)-induced SSc by ELISA and Western blotting. We then evaluated the effects of the inactivation of vnn1 on the development of fibrosis, endothelial alterations, and immunological activation in mice with HOCl- and bleomycin-induced SSc. We then explored the vanin-1/pantetheinase pathway in a cohort of patients with SSc and in controls. In wild-type mice with HOCl-induced SSc, the vanin-1/pantetheinase pathway was dysregulated, with elevation of vanin-1 activity in skin and high levels of serum pantothenic acid. Inactivation of the vnn1 gene in vnn1-/- mice with HOCl-induced SSc prevented the development of characteristic features of the disease, including fibrosis, immunologic abnormalities, and endothelial dysfunction. Remarkably, patients with diffuse SSc also had increased expression of vanin-1 in skin and blood and elevated levels of serum pantothenic acid that correlated with the severity of the disease. Our data demonstrate that vanin-1/pantetheinase controls fibrosis, vasculopathy, autoimmunity, and oxidative stress in SSc. The levels of vanin-1 expression and pantothenic acid determine SSc severity and can be used as markers of disease severity. More importantly, inhibition of vanin-1 can open new therapeutic approaches in SSc.
Insights
Systemic sclerosis (SSc) involves the vanin-1/pantetheinase pathway, which drives fibrosis and autoimmunity. Inhibiting vanin-1 may offer new SSc therapies.
Area of Science:
- Biochemistry
- Immunology
- Pathophysiology
Background:
- Systemic sclerosis (SSc) is an autoimmune disease marked by fibrosis and vascular issues.
- SSc pathophysiology involves systemic inflammation and oxidative stress.
- The vanin-1 gene (vnn1) encodes an enzyme converting pantethine to pantothenic acid and cystamine, impacting fibrosis and oxidation.
Purpose of the Study:
- To investigate the vanin-1/pantetheinase pathway in SSc pathophysiology.
- To evaluate the therapeutic potential of vnn1 inactivation in SSc models.
- To explore the pathway's role in human SSc patients.
Main Methods:
- ELISA and Western blotting to assess vanin-1/pantetheinase pathway activation in mice.
- Evaluation of vnn1 inactivation effects on fibrosis and immune responses in HOCl- and bleomycin-induced SSc models.
- Analysis of vanin-1/pantetheinase pathway in SSc patients and controls.
Main Results:
- Dysregulated vanin-1/pantetheinase pathway observed in HOCl-induced SSc mice with elevated skin vanin-1 activity and serum pantothenic acid.
- vnn1 inactivation in mice prevented SSc features like fibrosis, immune abnormalities, and endothelial dysfunction.
- SSc patients showed increased vanin-1 expression and serum pantothenic acid, correlating with disease severity.
Conclusions:
- The vanin-1/pantetheinase pathway is a key regulator of fibrosis, vasculopathy, autoimmunity, and oxidative stress in SSc.
- Vanin-1 expression and pantothenic acid levels serve as potential biomarkers for SSc severity.
- Targeting vanin-1 presents a promising therapeutic strategy for SSc.
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