4.5 Article

Differential proteomics reveals S100-A11 as a key factor in aldosterone-induced collagen expression in human cardiac fibroblasts

Journal

JOURNAL OF PROTEOMICS
Volume 166, Issue -, Pages 93-100

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jprot.2017.07.011

Keywords

Aldosterone; Proteomics; Collagen; Fibrosis

Funding

  1. Institute de Salud Carlos III-FEDER, a way to build Europe [CP13/00221]
  2. Fondo de Investigaciones Sanitarias [P115/02160]
  3. FIBROTARGETS project [602904]
  4. FP7 funded COST ADMIRE network [BM1301]
  5. Public University of Navarra
  6. PE I+D+I - ISCIII [PT13/0001]
  7. PE I+D+I - FEDER [PT13/0001]

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Aldosterone (Aldo) could induce cardiac fibrosis, a hallmark of heart disease. Aldo direct effects on collagen production in cardiac fibroblasts remain controversial. Our aim is to characterize changes in the proteome of adult human cardiac fibroblasts treated with Aldo to identify new proteins altered that might be new therapeutic targets in cardiovascular diseases. Aldo increased collagens expressions in human cardiac fibroblasts. Complementary, using a quantitative proteomic approach, 30 proteins were found differentially expressed between control and Aldo-treated cardiac fibroblasts. Among these proteins, 7 were up-regulated and 23 were down-regulated by Aldo. From the up-regulated proteins, collagen type I, collagen type III, collagen type VI and 5100-A11 were verified by Western blot. Moreover, protein interaction networks revealed a functional link between a third of Aldo modulated proteome and specific survival routes. S100-A11 was identified as a possible link between Aldo and collagen. Interestingly, CRISPR/Cas9-mediated knock-down of 5100-A11 blocked Aldo-induced collagen production in human cardiac fibroblasts. In adult human cardiac fibroblasts treated with Aldo, proteomic analyses revealed an increase in collagen production. S100-A11 was identified as a new regulator of Aldo-induced collagen production in human cardiac fibroblasts. These data could identify new candidate proteins for the treatment of cardiac fibrosis in cardiovascular diseases. Significance: S100-All is identified by a proteomic approach as a novel regulator of Aldosterone-induced collagen production in human cardiac fibroblasts. Our data could identify new candidate proteins of interest for the treatment of cardiac fibrosis in cardiovascular diseases. (C) 2017 Published by Elsevier B.V.

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