| Literature DB >> 27608497 |
Kayoko Hosaka1, Yunlong Yang2, Takahiro Seki1, Carina Fischer1, Olivier Dubey1, Erik Fredlund3, Johan Hartman3, Piotr Religa4, Hiromasa Morikawa5, Yoko Ishii6, Masakiyo Sasahara6, Ola Larsson3, Giulio Cossu7, Renhai Cao1, Sharon Lim1, Yihai Cao8.
Abstract
Vascular pericytes, an important cellular component in the tumor microenvironment, are often associated with tumor vasculatures, and their functions in cancer invasion and metastasis are poorly understood. Here we show that PDGF-BB induces pericyte-fibroblast transition (PFT), which significantly contributes to tumor invasion and metastasis. Gain- and loss-of-function experiments demonstrate that PDGF-BB-PDGFRβ signaling promotes PFT both in vitro and in in vivo tumors. Genome-wide expression analysis indicates that PDGF-BB-activated pericytes acquire mesenchymal progenitor features. Pharmacological inhibition and genetic deletion of PDGFRβ ablate the PDGF-BB-induced PFT. Genetic tracing of pericytes with two independent mouse strains, TN-AP-CreERT2:R26R-tdTomato and NG2-CreERT2:R26R-tdTomato, shows that PFT cells gain stromal fibroblast and myofibroblast markers in tumors. Importantly, coimplantation of PFT cells with less-invasive tumor cells in mice markedly promotes tumor dissemination and invasion, leading to an increased number of circulating tumor cells and metastasis. Our findings reveal a mechanism of vascular pericytes in PDGF-BB-promoted cancer invasion and metastasis by inducing PFT, and thus targeting PFT may offer a new treatment option of cancer metastasis.Entities:
Keywords: PDGF; fibroblast; mesenchymal cell; metastasis; pericyte
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Year: 2016 PMID: 27608497 PMCID: PMC5035870 DOI: 10.1073/pnas.1608384113
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 11.205