4.7 Article

Vectorial secretion of CTGF as a cell-type specific response to LPA and TGF-β in human tubular epithelial cells

期刊

CELL COMMUNICATION AND SIGNALING
卷 10, 期 -, 页码 -

出版社

BMC
DOI: 10.1186/1478-811X-10-25

关键词

Connective tissue growth factor; Primary human tubular epithelial cells; Transforming growth factor beta; Lysophosphatidic acid; Vectorial secretion; Cell polarization

资金

  1. Marohn Stiftung of the University of Erlangen-Nuremberg
  2. Department of Nephrology and Hypertension, University of Erlangen-Nurnberg
  3. Deutsche Forschungsgemeinschaft [SFB 423]

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Background: Increased expression of the pro-fibrotic protein connective tissue growth factor (CTGF) has been detected in injured kidneys and elevated urinary levels of CTGF are discussed as prognostic marker of chronic kidney disease. There is evidence that epithelial cells lining the renal tubular system contribute to uptake and secretion of CTGF. However, the role of different types of tubular epithelial cells in these processes so far has not been addressed in primary cultures of human cells. Results: Tubular epithelial cells of proximal and distal origin were isolated from human kidneys and cultured as polarized cells in insert wells. The pro-fibrotic stimuli lysophosphatidic acid (LPA) and transforming growth factor beta (TGF-beta) were used to induce CTGF secretion. LPA activated CTGF secretion in proximal tubular cells when applied from either the apical or the basolateral side as shown by immunocytochemistry. CTGF was secreted exclusively to the apical side. Signaling pathways activated by LPA included MAP kinase and Rho kinase signaling. TGF-beta applied from either side also stimulated CTGF secretion primarily to the apical side with little basolateral release. Interestingly, TGF-beta activation induced different signaling pathways depending on the side of TGF-beta application. Smad signaling was almost exclusively activated from the basolateral side most prominently in cells of distal origin. Only part of these cells also synthesized CTGF indicating that Smad activation alone was not sufficient for CTGF induction. MAP kinases were involved in apical TGF-beta-mediated activation of CTGF synthesis in proximal cells and a subset of epithelial cells of distal origin. This subpopulation of distal tubular cells was also able to internalize recombinant apical CTGF, in addition to proximal cells which were the main cells to take up exogenous CTGF. Conclusions: Analysis of polarized human primary renal epithelial cells in a transwell system shows that vectorial secretion of the pro-fibrotic protein CTGF depends on the cell type, the stimulus and the signaling pathway activated. In all conditions, CTGF was secreted mainly to the apical side upon TGF-beta and LPA treatment and therefore, likely contributes to increased urinary CTGF levels in vivo. Moreover, CTGF secreted basolaterally may be active as paracrine pro-fibrotic mediator.

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