Oncogenic role of a developmentally regulated NTRK2 splice variant

Temporally regulated alternative splicing choices are vital for proper development, yet the wrong splice choice may be detrimental. Here, we highlight a previously unidentified role for the neurotrophin receptor splice variant TrkB.T1 in neurodevelopment, embryogenesis, transformation, and oncogenes...

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Veröffentlicht in:Science advances 2022-10, Vol.8 (40), p.eabo6789-eabo6789
Hauptverfasser: Pattwell, Siobhan S, Arora, Sonali, Nuechterlein, Nicholas, Zager, Michael, Loeb, Keith R, Cimino, Patrick J, Holland, Nikolas C, Reche-Ley, Noemi, Bolouri, Hamid, Almiron Bonnin, Damian A, Szulzewsky, Frank, Phadnis, Vaishnavi V, Ozawa, Tatsuya, Wagner, Michael J, Haffner, Michael C, Cao, Junyue, Shendure, Jay, Holland, Eric C
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Sprache:eng
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Zusammenfassung:Temporally regulated alternative splicing choices are vital for proper development, yet the wrong splice choice may be detrimental. Here, we highlight a previously unidentified role for the neurotrophin receptor splice variant TrkB.T1 in neurodevelopment, embryogenesis, transformation, and oncogenesis across multiple tumor types in humans and mice. TrkB.T1 is the predominant isoform across embryonic organogenesis, and forced overexpression of this embryonic pattern causes multiple solid and nonsolid tumors in mice in the context of tumor suppressor loss. TrkB.T1 also emerges as the predominant isoform expressed in a wide range of adult and pediatric tumors, including those harboring tropomyosin receptor kinase fusions. Affinity purification-mass spectrometry proteomic analysis reveals distinct interactors with known developmental and oncogenic signaling pathways such as Wnt, transforming growth factor-β, Sonic Hedgehog, and Ras. From alterations in splicing factors to changes in gene expression, the discovery of isoform specific oncogenes with embryonic ancestry has the potential to shape the way we think about developmental systems and oncology.
ISSN:2375-2548
2375-2548
DOI:10.1126/sciadv.abo6789