4.7 Article

TWEAK favors phosphate-induced calcification of vascular smooth muscle cells through canonical and non-canonical activation of NFκB

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CELL DEATH & DISEASE
卷 7, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/cddis.2016.220

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资金

  1. Instituto de salud Carlos III (ISCIII)/Fondo Europeo de Desarrollo Regional (FEDER) funds [PI13/00047, PI15/00298, PIE13/00051]
  2. European uremic toxins (EUTOX)
  3. Sociedad Espanola de Nefrolgia
  4. ISCIII-RETIC [REDinREN RD012/0021]
  5. Comunidad de Madrid Consorcio Investigacion en Fracaso Renal Agudo (CIFRA) [S2010/BMD-2378]
  6. Programa Intensificacion Actividad Investigadora (ISCIII/Agencia Lain-Entralgo/CM)
  7. ERA/EDTA [LTF 153-2013]
  8. ISCIII [MS12/03262, MS14/00133, CD14/00198]
  9. Fundacion Conchita Rabago

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Vascular calcification (VC) is associated with increased cardiovascular mortality in aging, chronic kidney disease (CKD), type 2 diabetes mellitus (T2DM) and atherosclerosis. TNF-like weak inducer of apoptosis (TWEAK) recently emerged as a new biomarker for the diagnosis and prognosis of cardiovascular diseases. TWEAK binding to its functional receptor Fn14 was reported to promote several steps of atherosclerotic plaque progression. However, no information is currently available on the role of TWEAK/Fn14 on the development of medial calcification, which is highly prevalent in aging, CKD and T2DM. This study explored the involvement of TWEAK in human vascular smooth muscle cells (h-VSMCs) calcification in vitro. We report that TWEAK binding to Fn14 promotes inorganic phosphate-induced h-VSMCs calcification, favors h-VSMCs osteogenic transition, decreasing acta2 and myh11 and increasing bmp2 mRNA and tissue non-specific alkaline phosphatase (TNAP), and increases MMP9 activity. Blockade of the canonical NF kappa B pathway reduced by 80% TWEAK pro-calcific properties and decreased osteogenic transition, TNAP and MMP9 activity. Blockade of non-canonical NF kappa B signaling by a siRNA targeting RelB reduced by 20% TWEAK pro-calcific effects and decreased TWEAK-induced loss of h-VSMCs contractile phenotype and MMP9 activity, without modulating bmp2 mRNA or TNAP activity. Inhibition of ERK1/2 activation by a MAPK kinase inhibitor did not influence TWEAK pro-calcific properties. Our results suggest that TWEAK/Fn14 directly favors inorganic phosphate-induced h-VSMCs calcification by activation of both canonical and non-canonical NF kappa B pathways. Given the availability of neutralizing anti-TWEAK strategies, our study sheds light on the TWEAK/Fn14 axis as a novel therapeutic target in the prevention of VC.

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