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CXCL12 promotes the crossing of retinal ganglion cell axons at the optic chiasm

  • Viet Hang Le
  • , Clarisse Orniacki
  • , Veronica Murcia-Belmonte
  • , Laura Denti
  • , Dagmar Schutz
  • , Ralf Stumm
  • , Christiana Ruhrberg* (Corresponding Author)
  • , Lynda Erskine* (Corresponding Author)
  • *Corresponding author for this work
  • University College London
  • University of Aberdeen
  • Jena University Hospital
  • Instituto de Neurociencias

Research output: Contribution to journalArticlepeer-review

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Abstract

Binocular vision requires the segregation of retinal ganglion cell (RGC) axons extending from the retina into the ipsilateral and contralateral optic tracts. RGC axon segregation occurs at the optic chiasm, which forms at the ventral diencephalon midline. Using expression analyses, retinal explants and genetically modified mice, we demonstrate that CXCL12 (SDF1) is required for axon segregation at the optic chiasm. CXCL12 is expressed by the meninges bordering the optic pathway, and CXCR4 by both ipsilaterally and contralaterally projecting RGCs. CXCL12 or ventral diencephalon meninges potently promoted axon outgrowth from both ipsilaterally and contralaterally projecting RGCs. Further, a higher proportion of axons projected ipsilaterally in mice lacking CXCL12 or its receptor CXCR4 compared to wildtype mice due to misrouting of presumptive contralaterally-specified RGC axons. Although RGCs also expressed the alternative CXCL12 receptor ACKR3, the optic chiasm developed normally in mice lacking ACKR3. Our data support a model whereby meningeal-derived CXCL12 helps drive axon growth from CXCR4-expressing RGCs towards the diencephalon midline, enabling contralateral axon growth. These findings further our understanding of the molecular and cellular mechanisms controlling optic pathway development.
Original languageEnglish
Article numberdev202446
Number of pages8
JournalDevelopment
Volume151
Issue number2
Early online date12 Jan 2024
DOIs
Publication statusPublished - Jan 2024

Bibliographical note

Open Access via the JISC/CUP agreement

Funding
This work was supported by a University of Aberdeen Elphinstone Scholarship to V.-H.L., a Deutsche Forschungsgemeinschaft grant [TU295/10-1] to R.S. and a Wellcome Trust New Investigator Award [095623/Z/11/Z] to C.R. Open Access funding provided by University of Aberdeen. Deposited in PMC for immediate release.

Data Availability Statement

All relevant data can be found within the article and its supplementary information.

Keywords

  • Axon guidance
  • Binocular vision
  • Growth cone
  • Meninges
  • Optic pathway
  • CXCL12
  • Mouse

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