4.5 Article

A novel protein encoded by circular SMO RNA is essential for Hedgehog signaling activation and glioblastoma tumorigenicity

Journal

GENOME BIOLOGY
Volume 22, Issue 1, Pages -

Publisher

BMC
DOI: 10.1186/s13059-020-02250-6

Keywords

Glioblastoma; Circular RNA; Novel protein; Brain cancer stem cells; Hedgehog pathway

Funding

  1. National Natural Science Outstanding Youth Foundation of China [81822033]
  2. National Key Research and Development Program of China [2016YFA0503000]
  3. National Natural Science Foundation of China [81572477, 81772683, 81872261, 81702466]
  4. Scientific Project of Guangzhou [201803010013]
  5. Guangdong Innovative and Entrepreneurial Research Team Program [2016ZT06S638]
  6. Science and Technology Program of Guangzhou, China [201903010093]
  7. Natural Science Foundation of Guangdong Province [2017A030313801]

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This study identifies SMO-193a.a. encoded by circ-SMO as a critical component for Hedgehog signaling activation in glioblastoma, playing a key role in tumorigenesis. The positive feedback loop involving Shh/Gli1/FUS/SMO-193a.a. sustains Hedgehog signaling in glioblastoma, with higher expression of SMO-193a.a. predicting worse overall survival in patients, highlighting its potential prognostic value.
Background Aberrant activation of the Hedgehog pathway drives tumorigenesis of many cancers, including glioblastoma. However, the sensitization mechanism of the G protein-coupled-like receptor smoothened (SMO), a key component of Hedgehog signaling, remains largely unknown. Results In this study, we describe a novel protein SMO-193a.a. that is essential for Hedgehog signaling activation in glioblastoma. Encoded by circular SMO (circ-SMO), SMO-193a.a. is required for sonic hedgehog (Shh) induced SMO activation, via interacting with SMO, enhancing SMO cholesterol modification, and releasing SMO from the inhibition of patched transmembrane receptors. Deprivation of SMO-193a.a. in brain cancer stem cells attenuates Hedgehog signaling intensity and suppresses self-renewal, proliferation in vitro, and tumorigenicity in vivo. Moreover, circ-SMO/SMO-193a.a. is positively regulated by FUS, a direct transcriptional target of Gli1. Shh/Gli1/FUS/SMO-193a.a. form a positive feedback loop to sustain Hedgehog signaling activation in glioblastoma. Clinically, SMO-193a.a. is more specifically expressed in glioblastoma than SMO and is relevant to Gli1 expression. Higher expression of SMO-193a.a. predicts worse overall survival of glioblastoma patients, indicating its prognostic value. Conclusions Our study reveals that SMO-193a.a., a novel protein encoded by circular SMO, is critical for Hedgehog signaling, drives glioblastoma tumorigenesis and is a novel target for glioblastoma treatment.

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