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Jak/Stat Signaling Stimulates Zebrafish Optic Nerve Regeneration and Overcomes the Inhibitory Actions of Socs3 and Sfpq

机译:Jak / Stat信号刺激刺激斑马鱼视神经再生并克服Socs3和Sfpq的抑制作用

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摘要

The regenerative failure of mammalian optic axons is partly mediated by Socs3-dependent inhibition of Jak/Stat signaling (, 2011). Whether Jak/Stat signaling is part of the normal regenerative response observed in animals that exhibit an intrinsic capacity for optic nerve regeneration, such as zebrafish, remains unknown. Nor is it known whether the repression of regenerative inhibitors, such as Socs3, contributes to the robust regenerative response of zebrafish to optic nerve damage. Here we report that Jak/Stat signaling stimulates optic nerve regeneration in zebrafish. We found that IL-6 family cytokines, acting via Gp130-coupled receptors, stimulate Jak/Stat3 signaling in retinal ganglion cells after optic nerve injury. Among these cytokines, we found that CNTF, IL-11, and Clcf1/Crlf1a can stimulate optic axon regrowth. Surprisingly, optic nerve injury stimulated the expression of Socs3 and Sfpq (splicing factor, proline/glutamine rich) that attenuate optic nerve regeneration. These proteins were induced in a Jak/Stat-dependent manner, stimulated each other's expression and suppressed the expression of regeneration-associated genes. In vivo, the injury-dependent induction of Socs3 and Sfpq inhibits optic nerve regeneration but does not block it. We identified a robust induction of multiple cytokine genes in zebrafish retinal ganglion cells that may contribute to their ability to overcome these inhibitory factors. These studies not only identified mechanisms underlying optic nerve regeneration in fish but also suggest new molecular targets for enhancing optic nerve regeneration in mammals.
机译:哺乳动物视轴突的再生失败部分由Socs3依赖的Jak / Stat信号传导抑制介导(,2011)。 Jak / Stat信号传导是否是在表现出视神经再生的内在能力的动物(例如斑马鱼)中观察到的正常再生反应的一部分,这一点仍然未知。还不知道诸如Socs3之类的再生抑制剂的抑制是否有助于斑马鱼对视神经损伤的强有力的再生反应。在这里,我们报告Jak / Stat信号刺激斑马鱼的视神经再生。我们发现IL-6家族的细胞因子,通过Gp130耦合的受体,在视神经损伤后刺激视网膜神经节细胞中的Jak / Stat3信号传导。在这些细胞因子中,我们发现CNTF,IL-11和Clcf1 / Crlf1a可以刺激视神经轴突再生。出人意料的是,视神经损伤刺激了Socs3和Sfpq(剪接因子,富含脯氨酸/谷氨酰胺)的表达,从而减弱了视神经的再生。这些蛋白质以依赖于Jak / Stat的方式诱导,刺激彼此的表达并抑制与再生相关的基因的表达。在体内,依赖损伤的Socs3和Sfpq诱导可抑制视神经再生,但不阻止其再生。我们在斑马鱼的视网膜神经节细胞中鉴定了多种细胞因子基因的强力诱导,这可能有助于它们克服这些抑制因子的能力。这些研究不仅确定了鱼类视神经再生的机制,而且还提出了增强哺乳动物视神经再生的新分子靶标。

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