4.5 Article

Differential Expression of Sox11 and Bdnf mRNA Isoforms in the Injured and Regenerating Nervous Systems

期刊

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fnmol.2017.00354

关键词

axon injury; axon regeneration; gene expression; retinal ganglion cells; DRG neurons; glaucoma; epigenetic regulation; untranslated regions

资金

  1. NEI [R01EY017841, P30EY06360]
  2. NINDS [NS057190]
  3. Research to Prevent Blindness
  4. Department of Defense (DoD) [W81XWH12-1-0255]
  5. Viral Vector Core of the Emory Neuroscience NINDS [P30NS055077]
  6. Emory Integrated Genomics Core (EIGC)
  7. Emory University School of Medicine
  8. National Center for Advancing Translational Sciences of the National Institutes of Health [UL1TR000454]
  9. [T32EY007092-30]

向作者/读者索取更多资源

In both the central nervous system (CNS) and the peripheral nervous system (PNS), axonal injury induces changes in neuronal gene expression. In the PNS, a relatively well-characterized alteration in transcriptional activation is known to promote axonal regeneration. This transcriptional cascade includes the neurotrophin Bdnf and the transcription factor Sox11. Although both molecules act to facilitate successful axon regeneration in the PNS, this process does not occur in the CNS. The present study examines the differential expression of Sox11 and Bdnf mRNA isoforms in the PNS and CNS using three experimental paradigms at different time points: (i) the acutely injured CNS (retina after optic nerve crush) and PNS (dorsal root ganglion after sciatic nerve crush), (ii) a CNS regeneration model (retina after optic nerve crush and induced regeneration); and (iii) the retina during a chronic form of central neurodegeneration (the DBA/2J glaucoma model). We find an initial increase of Sox11 in both PNS and CNS after injury; however, the expression of Bdnf isoforms is higher in the PNS relative to the CNS. Sustained upregulation of Sox11 is seen in the injured retina following regeneration treatment, while the expression of two Bdnf mRNA isoforms is suppressed. Furthermore, two isoforms of Sox11 with different 3'UTR lengths are present in the retina, and the long isoform is specifically upregulated in later stages of glaucoma. These results provide insight into the molecular cascades active during axonal injury and regeneration in mammalian neurons.

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