Microglial GRB2 is essential for brain ventriculogenesis and CSF homeostasis

Microglia play essential yet poorly understood roles in brain development, including axon guidance, regulation of neurogenesis, and pruning of neuronal projections. Congenital hydrocephalus (CH), characterized by enlarged cerebrospinal fluid (CSF)-filled ventricles, is a leading cause of pediatric brain surgery, but its molecular mechanisms remain unclear. We have identified what we believe to be novel, recurrent, damaging missense variants in the SH3-binding domain of the adaptor protein Growth Factor Receptor-Bound Protein 2 ( GRB2 ) in unrelated patients with CH. GRB2 is significantly co-expressed with one of its known upstream receptor tyrosine kinase partners, CSF1R, in the developing human brain, particularly in a microglial subtype associated with regulation of neural stem cells. Immunoprecipitation validated GRB2-CSF1R binding in mouse microglial cells and human monocyte cell line. Cx3cr1-Grb2 fl/fl mice engineered with conditional deletion of Grb2 in microglia exhibit congenital absence of microglia and early postnatal severe communicating (non-obstructive) hydrocephalus, mimicking GRB2 -mutant patients. The severe ventriculomegaly of Cx3cr1-Grb2 fl/fl mice is associated with both depletion of cerebral cortical neurons and impairment of glia-lymphatic-mediated CSF flow. Together, these findings implicate a role of GRB2 in microglia that could be essential for brain development and CSF homeostasis.

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Publication Details

Journal
Journal of Clinical Investigation
Published
2026-09-10
DOI
https://doi.org/10.1172/jci185791
Primary Topic
Cerebrospinal fluid and hydrocephalus
Type
article
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article

Microglial GRB2 is essential for brain ventriculogenesis and CSF homeostasis

TuKiet T. Lam, Mason Blacker, Seth L. Alper, Patricia L. Musolino et al.
Journal of Clinical Investigation
Cerebrospinal fluid and hydrocephalus
article

Microglial GRB2 is essential for brain ventriculogenesis and CSF homeostasis

TuKiet T. Lam, Mason Blacker, Seth L. Alper, Patricia L. Musolino, Evan Dennis, Sheng Chih Jin, Shozeb Haider, Huanxing Sun, Garrett Allington, Xueyan Peng, Lê Thị Hảo, Anthony Piscopo, Pazhanichamy Kalailingam, Benjamin C. Reeves, Phan Q. Duy, Neel H. Mehta, Shuai Shao, E Herzog, Qiang Li, Baojian Fan, Kristopher T. Kahle, William C. Davalan, Carol Nelson-Williams, Kedous Y. Mekbib, Benjamin P. Kleinstiver, David Rufino-Ramos, Shujuan Zhao, Lei Wang
article en

Abstract

Microglia play essential yet poorly understood roles in brain development, including axon guidance, regulation of neurogenesis, and pruning of neuronal projections. Congenital hydrocephalus (CH), characterized by enlarged cerebrospinal fluid (CSF)-filled ventricles, is a leading cause of pediatric brain surgery, but its molecular mechanisms remain unclear. We have identified what we believe to be novel, recurrent, damaging missense variants in the SH3-binding domain of the adaptor protein Growth Factor Receptor-Bound Protein 2 ( GRB2 ) in unrelated patients with CH. GRB2 is significantly co-expressed with one of its known upstream receptor tyrosine kinase partners, CSF1R, in the developing human brain, particularly in a microglial subtype associated with regulation of neural stem cells. Immunoprecipitation validated GRB2-CSF1R binding in mouse microglial cells and human monocyte cell line. Cx3cr1-Grb2 fl/fl mice engineered with conditional deletion of Grb2 in microglia exhibit congenital absence of microglia and early postnatal severe communicating (non-obstructive) hydrocephalus, mimicking GRB2 -mutant patients. The severe ventriculomegaly of Cx3cr1-Grb2 fl/fl mice is associated with both depletion of cerebral cortical neurons and impairment of glia-lymphatic-mediated CSF flow. Together, these findings implicate a role of GRB2 in microglia that could be essential for brain development and CSF homeostasis.

Journal of Clinical Investigation
Beth Israel Deaconess Medical Center (US), Barrow Neurological Institute (US), Harvard University (US), Washington University in St. Louis (US), Yale University (US), Massachusetts General Hospital (US), University College London (GB), University of Virginia (US)
Openalex Percentile: Top 16%
Cerebrospinal fluid and hydrocephalus
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