4.6 Article

Negative regulation of interferon-γ/STAT1 signaling through cell adhesion and cell density-dependent STAT1 dephosphorylation

Journal

CELLULAR SIGNALLING
Volume 23, Issue 8, Pages 1404-1412

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.cellsig.2011.04.003

Keywords

STAT; Interferon-gamma; T-cell protein tyrosine phosphatase; Extracellular matrix; Actin cytoskeleton; Tyrosine dephosphorylation

Categories

Funding

  1. China National Natural Science Foundation [30672481, 30771097, 90713029, 30828018]
  2. Shanghai Science and Technology Research Grant [08DZ1971403, 09JC1416700]
  3. China Ministry of Science and Technology [2008ZX10002-020]
  4. National Science & Technology Major Project Key New Drug Creation and Manufacturing Program, China [2009ZX09301-001, 2009ZX09103-064]

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Signal transducer and activator of transcription 1 (STAT1) is an important mediator for cytokine signal transduction, particularly IFN-gamma. Following IFN-gamma stimulation, STAT1 is activated through tyrosine phosphorylation. Little is known about the function and regulation of STAT1 dephosphorylation after activation. We studied the regulation and function of STAT1 dephosphorylation in different types of cells and found that the phosphorylated STAT1 was quickly dephosphorylated in most of epithelial cells. Further studies revealed that the dephosphorylation of STAT1 was regulated by cell shape/adhesion. Actin cytoskeleton and extracellular matrix (ECM) proteins mediated the STAT1 dephosphorylation through the T-cell protein tyrosine phosphatase TCPTP. Inactivation of the dephosphorylation system by cell detachment rendered the cells more sensitive to IFN-gamma-induced cell death. Our results revealed a novel mechanism in regulating IFN-gamma/STAT1 signaling. This cell adhesion and cell cytoskeleton-dependent STAT1 dephosphorylation system may have a role in IFN-gamma-mediated immunosurveillance for cancer cells by inducing anoikis of detached metastatic cancer cells. (C) 2011 Elsevier Inc. All rights reserved.

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