4.6 Article

Depletion of β-arrestin-2 promotes tumor growth and angiogenesis in a murine model of lung cancer

Journal

JOURNAL OF IMMUNOLOGY
Volume 180, Issue 8, Pages 5699-5706

Publisher

AMER ASSOC IMMUNOLOGISTS
DOI: 10.4049/jimmunol.180.8.5699

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Funding

  1. NCI NIH HHS [056-CA92077, U56 CA092077, R01 CA087879] Funding Source: Medline
  2. NIAID NIH HHS [R01 AI038910, AI38910] Funding Source: Medline
  3. NIMHD NIH HHS [P20 MD00175, P20 MD000175] Funding Source: Medline

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Arrestins are adaptor/scaffold proteins that complex with activated and phosphorylated G protein-coupled receptor to terminate G protein activation and signal transduction. These complexes also mediate downstream signaling, independently of G protein activation. We have previously shown that beta-arrestin-2 (beta arr2) depletion promotes CXCR2-mediated cellular signaling, including angiogenesis and excisional wound closure. This study was designed to investigate the role of beta arr2 in tumorigenesis using a murine model of lung cancer. To that end, heterotopic murine Lewis lung cancer and tail vein metastasis tumor model systems in beta arr2-deficient mice (beta arr2(-/-)) and control littermates (beta arr2(+/+)) were used. beta arr2(-/-) mice exhibited a significant increase in Lewis lung cancer tumor growth and metastasis relative to beta arr2(+/+) mice. This correlated with decreased number of tumor-infiltrating lymphocytes but with elevated levels of the ELR+ chemokines (CXCL1/keratinocyte-derived chemokine and CXCL2/MIP-2), vascular endothelial growth factor, and microvessel density: NF-kappa B activity was also enhanced in beta arr2(-/-) mice, whereas hypoxia-inducible factor-la expression was decreased. Inhibition of CXCR2 or NF-kappa B reduced tumor growth in both beta arr2(-/-) and beta arr2(+/+) mice. NF-kappa B inhibition also decreased ELR+ chemokines and vascular endothelial growth factor expression. Altogether, the data suggest that beta arr2 modulates tumorigenesis by regulating inflammation and angiogenesis through activation of CXCR2 and NF-kappa B.

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