4.8 Article

Opposing intrinsic temporal gradients guide neural stem cell production of varied neuronal fates

Journal

SCIENCE
Volume 350, Issue 6258, Pages 317-320

Publisher

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.aad1886

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Funding

  1. Transgenic RNAi Project at Harvard Medical School [NIH/NIGMS R01-GM084947]
  2. Howard Hughes Medical Institute

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Neural stem cells show age-dependent developmental potentials, as evidenced by their production of distinct neuron types at different developmental times. Drosophila neuroblasts produce long, stereotyped lineages of neurons. We searched for factors that could regulate neural temporal fate by RNA-sequencing lineage-specific neuroblasts at various developmental times. We found that two RNA-binding proteins, IGF-II mRNA-binding protein (Imp) and Syncrip (Syp), display opposing high-to-low and low-to-high temporal gradients with lineage-specific temporal dynamics. Imp and Syp promote early and late fates, respectively, in both a slowly progressing and a rapidly changing lineage. Imp and Syp control neuronal fates in the mushroom body lineages by regulating the temporal transcription factor Chinmo translation. Together, the opposing Imp/Syp gradients encode stem cell age, specifying multiple cell fates within a lineage.

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