Retinal ganglion cell-derived semaphorin 6A segregates starburst amacrine cell dendritic scaffolds to organize the mouse inner retina

Publication date

2024-11

Authors

James, Rebecca E.
Hamilton, Natalie R.
Huffman, Lola Nicole
Brown, Matthew P.
Neckles, Victoria N.
Pasterkamp, R JeroenORCID 0000-0003-1631-6440ISNI 0000000115734160
Goff, Loyal A.
Kolodkin, Alex L.

Editors

Advisors

Supervisors

Document Type

Article

Collections

Open Access logo

License

cc_by

Abstract

To form functional circuits, neurons must settle in their appropriate cellular locations, and then project and elaborate neurites to contact their target synaptic neuropils. Laminar organization within the vertebrate retinal inner plexiform layer (IPL) facilitates pre- and postsynaptic neurite targeting, yet the precise mechanisms underlying establishment of functional IPL subdomains are not well understood. Here, we explore mechanisms defining the compartmentalization of OFF and ON neurites generally, and OFF and ON direction-selective neurites specifically, within the developing mouse IPL. We show that semaphorin 6A (Sema6A), a repulsive axon guidance cue, is required for delineation of OFF versus ON circuits within the IPL: in the Sema6a null IPL, the boundary between OFF and ON domains is blurred. Furthermore, Sema6A expressed by retinal ganglion cells (RGCs) directs laminar segregation of OFF and ON starburst amacrine cell dendritic scaffolds, which themselves serve as a substrate upon which other retinal neurites elaborate. These results demonstrate that RGCs, the first type of neuron born within the retina, play an active role in functional specialization of the IPL.

Keywords

Direction selectivity, Retinal patterning, Sema6A, Starburst amacrine cells, Molecular Biology, Developmental Biology

Citation

James, R E, Hamilton, N R, Huffman, L N, Brown, M P, Neckles, V N, Pasterkamp, R J, Goff, L A & Kolodkin, A L 2024, 'Retinal ganglion cell-derived semaphorin 6A segregates starburst amacrine cell dendritic scaffolds to organize the mouse inner retina', Development (Cambridge), vol. 151, no. 22, dev204293. https://doi.org/10.1242/dev.204293