Saied-Santiago Kristian, Baxter Melissa, Mathiaparanam Jaffna, Granato Michael
Department of Cell and Developmental Biology, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania, 19104, United States of America.
bioRxiv. 2024 Aug 13:2024.08.12.607648. doi: 10.1101/2024.08.12.607648.
Optic nerve (ON) regeneration in mammalian systems is limited by an overshadowing dominance of inhibitory factors. This has severely hampered the identification of pro-regenerative pathways. Here, we take advantage of the regenerative capacity of larval zebrafish to identify pathways that promote ON regeneration. From a small molecule screen, we identified modulators of serotonin (5-HT) signaling that inhibit ON regeneration. We find several serotonin type-1 receptor genes are expressed in RGC neurons during regeneration and that inhibiting 5-HT1 receptors or components of the 5-HT pathway selectively impedes ON regeneration. We show that 5-HT1 receptor signaling is dispensable during ON development yet is critical for regenerating axons to emerge from the injury site. Blocking 5-HT receptors once ON axons have crossed the chiasm does not inhibit regeneration, suggesting a selective role for 5-HT receptor signaling early during ON regeneration. Finally, we show that agonist-mediated activation of 5-HT1 receptors leads to enhanced and ectopic axonal regrowth. Combined, our results provide evidence for mechanisms through which serotonin-dependent neuromodulation directs ON regeneration in vivo.
在哺乳动物系统中,视神经(ON)的再生受到抑制因子占主导地位的限制。这严重阻碍了对促再生途径的识别。在此,我们利用斑马鱼幼体的再生能力来识别促进视神经再生的途径。通过小分子筛选,我们鉴定出抑制视神经再生的血清素(5-HT)信号调节剂。我们发现,在再生过程中,几个血清素1型受体基因在视网膜神经节细胞(RGC)神经元中表达,并且抑制5-HT1受体或5-HT途径的成分会选择性地阻碍视神经再生。我们表明,5-HT1受体信号在视神经发育过程中并非必需,但对于再生轴突从损伤部位长出至关重要。一旦视神经轴突穿过视交叉后阻断5-HT受体并不会抑制再生,这表明5-HT受体信号在视神经再生早期具有选择性作用。最后,我们表明激动剂介导的5-HT1受体激活会导致轴突再生增强和异位生长。综合来看,我们的结果为血清素依赖性神经调节在体内指导视神经再生的机制提供了证据。