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. 2023 Aug 29;42(8):112985.
doi: 10.1016/j.celrep.2023.112985. Epub 2023 Aug 16.

Pou3f1 orchestrates a gene regulatory network controlling contralateral retinogeniculate projections

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Free article

Pou3f1 orchestrates a gene regulatory network controlling contralateral retinogeniculate projections

Michel Fries et al. Cell Rep. .
Free article

Abstract

The balance of contralateral and ipsilateral retinogeniculate projections is critical for binocular vision, but the transcriptional programs regulating this process remain ill defined. Here we show that the Pou class homeobox protein POU3F1 is expressed in nascent mouse contralateral retinal ganglion cells (cRGCs) but not ipsilateral RGCs (iRGCs). Upon Pou3f1 inactivation, the proportion of cRGCs is reduced in favor of iRGCs, leading to abnormal projection ratios at the optic chiasm. Conversely, misexpression of Pou3f1 in progenitors increases the production of cRGCs. Using CUT&RUN and RNA sequencing in gain- and loss-of-function assays, we demonstrate that POU3F1 regulates expression of several key members of the cRGC gene regulatory network. Finally, we report that POU3F1 is sufficient to induce RGC-like cell production, even in late-stage retinal progenitors of Atoh7 knockout mice. This work uncovers POU3F1 as a regulator of the cRGC transcriptional program, opening possibilities for optic nerve regenerative therapies.

Keywords: CP: Developmental biology; CP: Neuroscience; axon guidance; binocular; circuit; circuit development; gene network; optic nerve; optic tract; sight; stereopsis; tracing; transcriptional regulation; vision.

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Conflict of interest statement

Declaration of interests The authors declare no competing interests.