Cascade diversification directs generation of neuronal diversity in the hypothalamus.

Cell Stem Cell

State Key Laboratory of Molecular Development Biology, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing 100101, China; University of Chinese Academy of Sciences, Beijing 100101, China; CAS Center for Excellence in Brain Science and Intelligence Technology, Shanghai 200031, China; Chinese Institute for Brain Research, Beijing 102206, China. Electronic address:

Published: August 2021

AI Article Synopsis

  • The hypothalamus has a diverse range of neurons that regulate various body functions, but how this diversity develops is not fully understood.
  • Researchers analyzed over 43,000 cells from the hypothalamus to understand how different types of brain cells, like radial glial cells and intermediate progenitor cells, contribute to neuron diversity.
  • The study suggests that a single type of precursor cell can differentiate into multiple neuron types, indicating a step-by-step process in the development of hypothalamic neurons and shedding light on how neuronal diversity arises.

Article Abstract

The hypothalamus contains an astounding heterogeneity of neurons that regulate endocrine, autonomic, and behavioral functions. However, its molecular developmental trajectory and origin of neuronal diversity remain unclear. Here, we profile the transcriptome of 43,261 cells derived from Rax hypothalamic neuroepithelium to map the developmental landscape of the mouse hypothalamus and trajectory of radial glial cells (RGCs), intermediate progenitor cells (IPCs), nascent neurons, and peptidergic neurons. We show that RGCs adopt a conserved strategy for multipotential differentiation but generate Ascl1 and Neurog2 IPCs. Ascl1 IPCs differ from their telencephalic counterpart by displaying fate bifurcation, and postmitotic nascent neurons resolve into multiple peptidergic neuronal subtypes. Clonal analysis further demonstrates that single RGCs can produce multiple neuronal subtypes. Our study reveals that multiple cell types along the lineage hierarchy contribute to fate diversification of hypothalamic neurons in a stepwise fashion, suggesting a cascade diversification model that deconstructs the origin of neuronal diversity.

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Source
http://dx.doi.org/10.1016/j.stem.2021.03.020DOI Listing

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