Neuroblast differentiation during development and in neuroblastoma requires KIF1Bβ-mediated transport of TRKA

We recently identified pathogenic β mutations in sympathetic nervous system malignancies that are defective in developmental apoptosis. Here we deleted β in the mouse sympathetic nervous system and observed impaired sympathetic nervous function and misexpression of genes required for sympathoadrenal...

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Veröffentlicht in:Genes & development 2017-05, Vol.31 (10), p.1036-1053
Hauptverfasser: Fell, Stuart M, Li, Shuijie, Wallis, Karin, Kock, Anna, Surova, Olga, Rraklli, Vilma, Höfig, Carolin S, Li, Wenyu, Mittag, Jens, Henriksson, Marie Arsenian, Kenchappa, Rajappa S, Holmberg, Johan, Kogner, Per, Schlisio, Susanne
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Sprache:eng
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Zusammenfassung:We recently identified pathogenic β mutations in sympathetic nervous system malignancies that are defective in developmental apoptosis. Here we deleted β in the mouse sympathetic nervous system and observed impaired sympathetic nervous function and misexpression of genes required for sympathoadrenal lineage differentiation. We discovered that KIF1Bβ is required for nerve growth factor (NGF)-dependent neuronal differentiation through anterograde transport of the NGF receptor TRKA. Moreover, pathogenic β mutations identified in neuroblastoma impair TRKA transport. Expression of neuronal differentiation markers is ablated in both β-deficient mouse neuroblasts and human neuroblastomas that lack KIF1Bβ. Transcriptomic analyses show that unfavorable neuroblastomas resemble mouse sympathetic neuroblasts lacking KIF1Bβ independent of amplification and the loss of genes neighboring on chromosome 1p36. Thus, defective precursor cell differentiation, a common trait of aggressive childhood malignancies, is a pathogenic effect of KIF1Bβ loss in neuroblastomas. Furthermore, neuropathy-associated mutations impede cargo transport, providing a direct link between neuroblastomas and neurodegeneration.
ISSN:0890-9369
1549-5477
1549-5477
DOI:10.1101/gad.297077.117