Related Experiment Video
Updated: Jul 29, 2025

Intraventricular Transplantation of Engineered Neuronal Precursors for In Vivo Neuroarchitecture Studies
Published on: May 11, 2019
FOXG1 targets BMP repressors and cell cycle inhibitors in human neural progenitor cells
Nuwan C Hettige1,2, Peter Fleming2,3, Amelia Semenak2,3
1Department of Human Genetics, McGill University, Montreal, QC H3A 0C7, Canada.
Abstract:
FOXG1 is a critical transcription factor in human brain where loss-of-function mutations cause a severe neurodevelopmental disorder, while increased FOXG1 expression is frequently observed in glioblastoma. FOXG1 is an inhibitor of cell patterning and an activator of cell proliferation in chordate model organisms but different mechanisms have been proposed as to how this occurs. To identify genomic targets of FOXG1 in human neural progenitor cells (NPCs), we engineered a cleavable reporter construct in endogenous FOXG1 and performed chromatin immunoprecipitation (ChIP) sequencing. We also performed deep RNA sequencing of NPCs from two females with loss-of-function mutations in FOXG1 and their healthy biological mothers. Integrative analyses of RNA and ChIP sequencing data showed that cell cycle regulation and Bone Morphogenic Protein (BMP) repression gene ontology categories were over-represented as FOXG1 targets. Using engineered brain cell lines, we show that FOXG1 specifically activates SMAD7 and represses CDKN1B. Activation of SMAD7 which inhibits BMP signaling may be one way that FOXG1 patterns the forebrain, while repression of cell cycle regulators such as CDKN1B may be one way that FOXG1 expands the NPC pool to ensure proper brain size. Our data reveal novel mechanisms on how FOXG1 may control forebrain patterning and cell proliferation in human brain development.
Insights
Forkhead box G1 (FOXG1) regulates human brain development by controlling cell proliferation and patterning. This study identifies its genomic targets, revealing mechanisms for forebrain development and neural progenitor cell expansion.
Area of Science:
- Neuroscience
- Developmental Biology
- Genetics
Background:
- FOXG1 is a crucial transcription factor in human brain development.
- Dysregulation of FOXG1 is linked to neurodevelopmental disorders and glioblastoma.
Purpose of the Study:
- To identify the genomic targets of FOXG1 in human neural progenitor cells (NPCs).
- To elucidate the mechanisms by which FOXG1 controls forebrain patterning and NPC proliferation.
Main Methods:
- Engineered a cleavable reporter construct in endogenous FOXG1.
- Performed chromatin immunoprecipitation (ChIP) sequencing and deep RNA sequencing.
- Integrated RNA and ChIP sequencing data analyses.
Main Results:
- Identified cell cycle regulation and Bone Morphogenic Protein (BMP) repression as key FOXG1 target categories.
- Demonstrated FOXG1 activates SMAD7 (inhibiting BMP signaling) and represses CDKN1B (a cell cycle regulator).
Conclusions:
- FOXG1 patterns the forebrain via SMAD7-mediated BMP signaling inhibition.
- FOXG1 expands the NPC pool by repressing cell cycle regulators like CDKN1B, ensuring proper brain size.

