4.5 Article

The Unfolded Protein Response Selectively Targets Active Smoothened Mutants

Journal

MOLECULAR AND CELLULAR BIOLOGY
Volume 33, Issue 12, Pages 2375-2387

Publisher

AMER SOC MICROBIOLOGY
DOI: 10.1128/MCB.01445-12

Keywords

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Funding

  1. NIH/NCI Cancer Center Core Support (St. Jude) [5P30CA021765]
  2. ALSAC of SJCRH
  3. [MOD 5-FY10-6]
  4. [1R01GM101087]

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The Hedgehog signaling pathway, an essential regulator of developmental patterning, has been implicated in playing causative and survival roles in a range of human cancers. The signal-transducing component of the pathway, Smoothened, has revealed itself to be an efficacious therapeutic target in combating oncogenic signaling. However, therapeutic challenges remain in cases where tumors acquire resistance to Smoothened antagonists, and also in cases where signaling is driven by active Smoothened mutants that exhibit reduced sensitivity to these compounds. We previously demonstrated that active Smoothened mutants are subjected to prolonged endoplasmic reticulum (ER) retention, likely due to their mutations triggering conformation shifts that are detected by ER quality control. We attempted to exploit this biology and demonstrate that deregulated Hedgehog signaling driven by active Smoothened mutants is specifically attenuated by ER stressors that induce the unfolded protein response (UPR). Upon UPR induction, active Smoothened mutants are targeted by ER-associated degradation, resulting in attenuation of inappropriate pathway activity. Accordingly, we found that the UPR agonist thapsigargin attenuated mutant Smoothened-induced phenotypes in vivo in Drosophila melanogaster. Wild-type Smoothened and physiological Hedgehog patterning were not affected, suggesting that UPR modulation may provide a novel therapeutic window to be evaluated for targeting active Smoothened mutants in disease.

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