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A central role for Foxp3+ regulatory T cells in K-Ras-driven lung tumorigenesis.

Publication ,  Journal Article
Granville, CA; Memmott, RM; Balogh, A; Mariotti, J; Kawabata, S; Han, W; Lopiccolo, J; Foley, J; Liewehr, DJ; Steinberg, SM; Fowler, DH ...
Published in: PLoS One
2009

BACKGROUND: K-Ras mutations are characteristic of human lung adenocarcinomas and occur almost exclusively in smokers. In preclinical models, K-Ras mutations are necessary for tobacco carcinogen-driven lung tumorigenesis and are sufficient to cause lung adenocarcinomas in transgenic mice. Because these mutations confer resistance to commonly used cytotoxic chemotherapies and targeted agents, effective therapies that target K-Ras are needed. Inhibitors of mTOR such as rapamycin can prevent K-Ras-driven lung tumorigenesis and alter the proportion of cytotoxic and Foxp3+ regulatory T cells, suggesting that lung-associated T cells might be important for tumorigenesis. METHODS: Lung tumorigenesis was studied in three murine models that depend on mutant K-Ras; a tobacco carcinogen-driven model, a syngeneic inoculation model, and a transgenic model. Splenic and lung-associated T cells were studied using flow cytometry and immunohistochemistry. Foxp3+ cells were depleted using rapamycin, an antibody, or genetic ablation. RESULTS: Exposure of A/J mice to a tobacco carcinogen tripled lung-associated Foxp3+ cells prior to tumor development. At clinically relevant concentrations, rapamycin prevented this induction and reduced lung tumors by 90%. In A/J mice inoculated with lung adenocarcinoma cells resistant to rapamycin, antibody-mediated depletion of Foxp3+ cells reduced lung tumorigenesis by 80%. Likewise, mutant K-Ras transgenic mice lacking Foxp3+ cells developed 75% fewer lung tumors than littermates with Foxp3+ cells. CONCLUSIONS: Foxp3+ regulatory T cells are required for K-Ras-mediated lung tumorigenesis in mice. These studies support clinical testing of rapamycin or other agents that target Treg in K-Ras driven human lung cancer.

Duke Scholars

Published In

PLoS One

DOI

EISSN

1932-6203

Publication Date

2009

Volume

4

Issue

3

Start / End Page

e5061

Location

United States

Related Subject Headings

  • T-Lymphocytes, Regulatory
  • Sirolimus
  • Nicotiana
  • Mutation
  • Mice, Transgenic
  • Mice
  • Lung Neoplasms
  • Genes, ras
  • General Science & Technology
  • Forkhead Transcription Factors
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Granville, C. A., Memmott, R. M., Balogh, A., Mariotti, J., Kawabata, S., Han, W., … Dennis, P. A. (2009). A central role for Foxp3+ regulatory T cells in K-Ras-driven lung tumorigenesis. PLoS One, 4(3), e5061. https://doi.org/10.1371/journal.pone.0005061
Granville, Courtney A., Regan M. Memmott, Andria Balogh, Jacopo Mariotti, Shigeru Kawabata, Wei Han, Jaclyn Lopiccolo, et al. “A central role for Foxp3+ regulatory T cells in K-Ras-driven lung tumorigenesis.PLoS One 4, no. 3 (2009): e5061. https://doi.org/10.1371/journal.pone.0005061.
Granville CA, Memmott RM, Balogh A, Mariotti J, Kawabata S, Han W, et al. A central role for Foxp3+ regulatory T cells in K-Ras-driven lung tumorigenesis. PLoS One. 2009;4(3):e5061.
Granville, Courtney A., et al. “A central role for Foxp3+ regulatory T cells in K-Ras-driven lung tumorigenesis.PLoS One, vol. 4, no. 3, 2009, p. e5061. Pubmed, doi:10.1371/journal.pone.0005061.
Granville CA, Memmott RM, Balogh A, Mariotti J, Kawabata S, Han W, Lopiccolo J, Foley J, Liewehr DJ, Steinberg SM, Fowler DH, Hollander MC, Dennis PA. A central role for Foxp3+ regulatory T cells in K-Ras-driven lung tumorigenesis. PLoS One. 2009;4(3):e5061.

Published In

PLoS One

DOI

EISSN

1932-6203

Publication Date

2009

Volume

4

Issue

3

Start / End Page

e5061

Location

United States

Related Subject Headings

  • T-Lymphocytes, Regulatory
  • Sirolimus
  • Nicotiana
  • Mutation
  • Mice, Transgenic
  • Mice
  • Lung Neoplasms
  • Genes, ras
  • General Science & Technology
  • Forkhead Transcription Factors