Abstract
Signaling crosstalk between tumor cells and fibroblasts confers proinvasive properties to the tumor microenvironment. Here, we identify leukemia inhibitory factor (LIF) as a tumor promoter that mediates proinvasive activation of stromal fibroblasts independent of alpha-smooth muscle actin (α-SMA) expression. We demonstrate that a pulse of transforming growth factor β (TGF-β) establishes stable proinvasive fibroblast activation by inducing LIF production in both fibroblasts and tumor cells. In fibroblasts, LIF mediates TGF-β-dependent actomyosin contractility and extracellular matrix remodeling, which results in collective carcinoma cell invasion in vitro and in vivo. Accordingly, carcinomas from multiple origins and melanomas display strong LIF upregulation, which correlates with dense collagen fiber organization, cancer cell collective invasion, and poor clinical outcome. Blockade of JAK activity by Ruxolitinib (JAK inhibitor) counteracts fibroblast-dependent carcinoma cell invasion in vitro and in vivo. These findings establish LIF as a proinvasive fibroblast producer independent of α-SMA and may open novel therapeutic perspectives for patients with aggressive primary tumors.
MeSH Terms
Actins/genetics,metabolism
Actomyosin/metabolism
Animals
Carcinogenesis/metabolism,pathology
Carcinoma/metabolism,pathology
Cell Line, Tumor
Cell Movement
Extracellular Matrix/metabolism
Female
Fibroblasts/drug effects,metabolism
Humans
Janus Kinases/antagonists & inhibitors
Leukemia Inhibitory Factor/genetics,metabolism
Melanoma/metabolism,pathology
Mice
Mice, Inbred BALB C
Neoplasm Invasiveness
Nitriles
Pyrazoles/pharmacology
Pyrimidines
Signal Transduction
Transforming Growth Factor beta/pharmacology
Tumor Microenvironment
Up-Regulation
Chemicals
Actins
LIF protein, human
Leukemia Inhibitory Factor
Nitriles
Pyrazoles
Pyrimidines
Transforming Growth Factor beta
alpha-smooth muscle actin, mouse
ruxolitinib
Actomyosin
Janus Kinases
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Albrengues Jean
INSERM, U1081, CNRS, UMR7284, Institute for Research on Cancer and Aging, Nice (IRCAN), University of Nice Sophia Antipolis, Medical School, 28 Avenue Valombrose, F-06107 Nice, France.
Bourget Isabelle
INSERM, U1081, CNRS, UMR7284, Institute for Research on Cancer and Aging, Nice (IRCAN), University of Nice Sophia Antipolis, Medical School, 28 Avenue Valombrose, F-06107 Nice, France.
Pons Catherine
INSERM, U1081, CNRS, UMR7284, Institute for Research on Cancer and Aging, Nice (IRCAN), University of Nice Sophia Antipolis, Medical School, 28 Avenue Valombrose, F-06107 Nice, France.
Butet Vincent
Pathological Anatomy and Cytology Laboratory, 270 Avenue Sainte-Marguerite, F-06200 Nice, France.
Hofman Paul
Laboratory of Clinical and Experimental Pathology and Hospital-Integrated Tumor Biobank, Pasteur Hospital, F-06002 Nice, France.
Tartare-Deckert Sophie
INSERM, U1065, Mediterranean Centre for Molecular Medicine (C3M), University of Nice Sophia Antipolis, F-06204 Nice, France.
Feral Chloe C
INSERM, U1081, CNRS, UMR7284, Institute for Research on Cancer and Aging, Nice (IRCAN), University of Nice Sophia Antipolis, Medical School, 28 Avenue Valombrose, F-06107 Nice, France.
Meneguzzi Guerrino
INSERM, U1081, CNRS, UMR7284, Institute for Research on Cancer and Aging, Nice (IRCAN), University of Nice Sophia Antipolis, Medical School, 28 Avenue Valombrose, F-06107 Nice, France.
Gaggioli Cedric
INSERM, U1081, CNRS, UMR7284, Institute for Research on Cancer and Aging, Nice (IRCAN), University of Nice Sophia Antipolis, Medical School, 28 Avenue Valombrose, F-06107 Nice, France. Electronic address:
[email protected].