The neocortex, a structure covering mammalian brains, computes high-order sensory, motor, and cognitive processes. Over the course of evolution, the neocortex of certain species expanded dramatically and folded, thereby providing superior sensorimotor and cognitive abilities. The immense expansion of the neocortex in humans has made possible the complex behavior, cognition, and intellect that are unique to humans. Neocortical expansion and folding reflect an increase in the number of neural cells and are thus dependent on the number of neural progenitor/stem cells. The long-term goal of this project is to understand the mechanisms regulating neural progenitor/stem cell expansion and the growth and folding of the neocortex. Sonic hedgehog (Shh) signaling promotes the expansion of neural progenitor/stem cells, leading to the growth and folding of the neocortex in mice. Shh signaling also increases the number of neural progenitor/stem cells in human cerebral organoids, a miniature model of the developing brain grown from human pluripotent stem cells. The short-term goal of this project is to understand how Shh signaling expands neural progenitor/stem cells. Shh signaling controls the expression of a set of genes (Shh effectors) to exert its biological activity. This project has two main components: 1) the expression of Shh effectors will be artificially increased or decreased in neural progenitor/stem cells in mice and human cerebral organoids in order to understand how Shh effectors regulate neural progenitor/stem cells; and 2) the strength of Shh signaling will be increased or decreased in ferret fetuses and ferret brain slices to investigate whether and how Shh signaling regulates neural progenitor/stem cells in intact animals with folded brains. The proposed research will provide deeper insights into the mechanisms underlying neocortical expansion and folding and the etiology of neurodevelopmental diseases.

Public Health Relevance

The unique mental abilities of humans are rooted in the immensely expanded and folded neocortex, which reflects the expansion of neural progenitor/stem cells. Abnormal size or folding of the human neocortex can cause intellectual disability and other neurological disorders. By defining the mechanisms regulating neural progenitor/stem cell expansion, the proposed research will help us to understand the mechanisms underlying such disorders that are caused by genetic and other factors, including controlled substances and certain viruses.

Agency
National Institute of Health (NIH)
Institute
National Institute of Neurological Disorders and Stroke (NINDS)
Type
Research Project (R01)
Project #
5R01NS100939-02
Application #
9570720
Study Section
Neurogenesis and Cell Fate Study Section (NCF)
Program Officer
Riddle, Robert D
Project Start
2017-09-30
Project End
2022-07-31
Budget Start
2018-08-01
Budget End
2019-07-31
Support Year
2
Fiscal Year
2018
Total Cost
Indirect Cost
Name
St. Jude Children's Research Hospital
Department
Type
DUNS #
067717892
City
Memphis
State
TN
Country
United States
Zip Code
38105
Garcia, A Denise R; Han, Young-Goo; Triplett, Jason W et al. (2018) The Elegance of Sonic Hedgehog: Emerging Novel Functions for a Classic Morphogen. J Neurosci 38:9338-9345