4.8 Article

GEF-H1 Signaling upon Microtubule Destabilization Is Required for Dendritic Cell Activation and Specific Anti-tumor Responses

Journal

CELL REPORTS
Volume 28, Issue 13, Pages 3367-+

Publisher

CELL PRESS
DOI: 10.1016/j.celrep.2019.08.057

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Funding

  1. NIH [AI113333, DK068181, DK043351]
  2. Cancer League Switzerland [KFS-3394-02-2014]
  3. Huggenberger Foundation
  4. Swiss National Science Foundation [IZK0Z3_170718, 31003A_166608]
  5. BeyondSpring Inc.
  6. Swiss National Science Foundation (SNF) [IZK0Z3_170718] Funding Source: Swiss National Science Foundation (SNF)

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Dendritic cell (DC) activation is a critical step for antitumor T cell responses. Certain chemotherapeutics can influence DC function. Here we demonstrate that chemotherapy capable of microtubule destabilization has direct effects on DC function; namely, it induces potent DC maturation and elicits anti-tumor immunity. Guanine nucleotide exchange factor-H1 (GEF-H1) is specifically released upon microtubule destabilization and is required for DC activation. In response to chemotherapy, GEF-H1 drives a distinct cell signaling program in DCs dominated by the c-Jun N-terminal kinase (JNK) pathway and AP-1/ATF transcriptional response for control of innate and adaptive immune responses. Microtubule destabilization, and subsequent GEF-H1 signaling, enhances cross-presentation of tumor antigens to CD8 T cells. In absence of GEF-H1, anti-tumor immunity is hampered. In cancer patients, high expression of the GEF-H1 immune gene signature is associated with prolonged survival. Our study identifies an alternate intracellular axis in DCs induced upon microtubule destabilization in which GEF-H1 promotes protective anti-tumor immunity.

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