4.3 Article

MMP7 interacts with ARF in nucleus to potentiate tumor microenvironments for prostate cancer progression in vivo

Journal

ONCOTARGET
Volume 7, Issue 30, Pages 47609-47619

Publisher

IMPACT JOURNALS LLC
DOI: 10.18632/oncotarget.10251

Keywords

MMP7; ARF; tumor microenvironments; prostate cancer

Funding

  1. Social Policy grant [2.23]
  2. NIH [MD004038, CA091408, CA163069, UL1 TR000445-06, U54 MD007593, G12 MD007586, R24 DA036420, S10RR0254970]

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ARF couples with TP53 in a canonical signaling pathway to activate cellular senescence for tumor suppressive function under oncogenic insults. However, the mechanisms on aberrant elevation of ARF in cancers are still poorly understood. We previously showed that ARF (p14(ARF) in human and p19(Arf) in mouse) elevation correlates with PTEN loss and stabilizes SLUG to reduce cell adhesion in prostate cancer (PCa). Here we report that ARF is essential for MMP7 expression, E-Cadherin decrease and the anchorage loss to the extracellular matrix (ECM) in PCa in vitro and in vivo. We found that Mmp7 is aberrantly elevated in cytosol and nucleus of malignant prostate tumors of Pten/Trp53 mutant mice. Interestingly, p19(Arf) deficiency strikingly decreases Mmp7 levels but increases E-Cadherin in Pten/Trp53/p19(Arf) mice. ARF knockdown markedly reduces MMP7 in human PCa cells. Conversely, tetracycline-inducible expression of ARF increases MMP7 with a decrease of E-Cadherin in PCa cells. Importantly, MMP7 physically binds ARF to show the co-localization in nucleus. Co-expression of MMP7 and ARF promotes cell migration, and MMP7 knockdown decreases wound healing in PCa cells. Furthermore, MMP7 elevation correlates with ARF expression in advanced human PCa. Our findings reveal for the first time that the crosstalk between ARF and MMP7 in nucleus contributes to ECM network in tumor microenvironments in vivo, implicating a novel therapeutic target for advanced PCa treatment.

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