A miR-383-5p Signaling Hub Coordinates the Axon Regeneration Response to Inflammation

Publication date

2024-10-30

Authors

Hintermayer, Matthew A.
Juzwik, Camille A.
Morquette, Barbara
Hua, Elizabeth
Zhang, Julia
Drake, Sienna
Shan Shi, Shan
Rambaldi, Isabel
Vangoor, Vamshidhar R.ORCID 0000-0003-0751-9772
Pasterkamp, R. JeroenORCID 0000-0003-1631-6440ISNI 0000000115734160

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taverne

Abstract

Neuroinflammation can positively influence axon regeneration following injury in the central nervous system. Inflammation promotes the release of neurotrophic molecules and stimulates intrinsic proregenerative molecular machinery in neurons, but the detailed mechanisms driving this effect are not fully understood. We evaluated how microRNAs are regulated in retinal neurons in response to intraocular inflammation to identify their potential role in axon regeneration. We found that miR-383-5p is downregulated in retinal ganglion cells in response to zymosan-induced intraocular inflammation. MiR-383-5p downregulation in neurons is sufficient to promote axon growth in vitro, and the intravitreal injection of a miR-383-5p inhibitor into the eye promotes axon regeneration following optic nerve crush. MiR-383-5p directly targets ciliary neurotrophic factor (CNTF) receptor components, and miR-383-5p inhibition sensitizes adult retinal neurons to the outgrowth-promoting effects of CNTF. Interestingly, we also demonstrate that CNTF treatment is sufficient to reduce miR-383-5p levels in neurons, constituting a positive-feedback module, whereby initial CNTF treatment reduces miR-383-5p levels, which then disinhibits CNTF receptor components to sensitize neurons to the ligand. Additionally, miR-383-5p inhibition derepresses the mitochondrial antioxidant protein peroxiredoxin-3 (PRDX3) which was required for the proregenerative effects associated with miR-383-5p loss-of-function in vitro. We have thus identified a positive-feedback mechanism that facilitates neuronal CNTF sensitivity in neurons and a new molecular signaling module that promotes inflammation-induced axon regeneration.

Keywords

axon regeneration, inflammation, microRNA, neurotrauma, neurotrophin, retina, Taverne, General Neuroscience

Citation

Hintermayer, M A, Juzwik, C A, Morquette, B, Hua, E, Zhang, J, Drake, S, Shan Shi, S, Rambaldi, I, Vangoor, V, Pasterkamp, J, Moore, C & Fournier, A E 2024, 'A miR-383-5p Signaling Hub Coordinates the Axon Regeneration Response to Inflammation', Journal of Neuroscience, vol. 44, no. 44, e1822232024. https://doi.org/10.1523/JNEUROSCI.1822-23.2024