EphB1 controls long-range cortical axon guidance through a cell non-autonomous role in GABAergic cells

Author:

Assali Ahlem1ORCID,Chenaux George2,Cho Jennifer Y.1,Berto Stefano1,Ehrlich Nathan A.1,Cowan Christopher W.12ORCID

Affiliation:

1. Medical University of South Carolina 1 Department of Neuroscience , , Charleston, SC 29425 , USA

2. University of Texas Southwestern Medical School 2 Department of Psychiatry , , Dallas, TX 75390 , USA

Abstract

ABSTRACT EphB1 is required for proper guidance of cortical axon projections during brain development, but how EphB1 regulates this process remains unclear. We show here that EphB1 conditional knockout (cKO) in GABAergic cells (Vgat-Cre), but not in cortical excitatory neurons (Emx1-Cre), reproduced the cortical axon guidance defects observed in global EphB1 KO mice. Interestingly, in EphB1 cKOVgat mice, the misguided axon bundles contained co-mingled striatal GABAergic and somatosensory cortical glutamatergic axons. In wild-type mice, somatosensory axons also co-fasciculated with striatal axons, notably in the globus pallidus, suggesting that a subset of glutamatergic cortical axons normally follows long-range GABAergic axons to reach their targets. Surprisingly, the ectopic axons in EphB1 KO mice were juxtaposed to major blood vessels. However, conditional loss of EphB1 in endothelial cells (Tie2-Cre) did not produce the axon guidance defects, suggesting that EphB1 in GABAergic neurons normally promotes avoidance of these ectopic axons from the developing brain vasculature. Together, our data reveal a new role for EphB1 in GABAergic neurons to influence proper cortical glutamatergic axon guidance during brain development.

Funder

National Institutes of Health

Simons Foundation

Medical Research Council Centre for Neurodevelopmental Disorders

Medical University of South Carolina

Publisher

The Company of Biologists

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