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◆ Developmental biology2026-09-09

Gbx2 and Robo receptors control amacrine cell dendrite stratification in the mammalian retina.

Labony Khandokar, Yessica Santana Agreda, Bridget M Curran, Le Ma, Kevin M Wright, Patrick C Kerstein

原始摘要(英文原文)· Original abstract
Within the neuronal classes of the retina, amacrine cells (ACs) exhibit the greatest neuronal diversity in morphology and function. We show that the selective expression of the transcription factor Gbx2 is required for dendritic stratification of an individual AC subtype in the mouse retina. We identify Robo1 and Robo2 as downstream effectors that when deleted, phenocopy the dendritic misprojections seen in Gbx2 mutants. Slit1 and Slit2, the ligands of Robo receptors, are localized to the upper layers of the inner plexiform layer where we observe the dendritic misprojections in both Gbx2 and Robo1/2 mutants. We show that Robo receptors also are required for the proper dendritic stratification of additional AC subtypes, such as Vglut3+ ACs. These results show both that Gbx2 regulates the terminal differentiation of a single AC subtype and identify Slit-Robo signaling as a developmental mechanism for dendrite stratification in the retina.
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Gbx2 and Robo receptors control amacrine cell dendrite stratification in the mammalian retina. — 科研速览 Science Skim