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Programmed cell death in zebrafish Rohon Beard neurons is influenced by TrkC1/NT-3 signaling

机译:斑马鱼Rohon Beard神经元中的程序性细胞死亡受TrkC1 / NT-3信号传导的影响

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Rohon Beard (RB) cells are embryonic primary sensory neurons that are removed by programmed cell death during larval development in zebrafish. RE somatosensory functions are taken over by neurons of the dorsal root ganglia (DRG), suggesting that RE cell death may be triggered by the differentiation of these ganglia, as has been proposed to be the case in Xenopus. However, here we show that the timing of RE cell death correlates with reduced expression of trkC1, the receptor for neurotrophin NT-3, but not with the appearance of DRG, which differentiate only after most RE cells die. trkC1 is expressed in subpopulations of RE neurons during development, and cell death is initiated only in trkC1-negative neurons, suggesting a role for TrkC1 and its ligand, NT-3, in RE cell survival. In support of this, antibodies that deplete NT-3 induce RE cell death while exogenous application of NT-3 reduces death. In addition, we show that RE cell death can be prevented using a caspase inhibitor, zVADfmk, showing that during normal development, RE cells die by a caspase-dependent programmed cell death pathway possibly triggered by reduced signaling via TrkC1. (C) 2000 Academic Press. [References: 37]
机译:Rohon Beard(RB)细胞是胚胎的主要感觉神经元,在斑马鱼的幼体发育过程中,通过程序性细胞死亡将其去除。 RE体感功能由背根神经节(DRG)的神经元接管,这表明RE细胞死亡可能是由这些神经节的分化触发的,正如非洲爪蟾所建议的那样。但是,这里我们显示RE细胞死亡的时机与神经营养蛋白NT-3的受体trkC1的表达降低有关,而与DRG的出现没有关系,DRG的出现仅在大多数RE细胞死亡后才发生分化。 trkC1在发育过程中在RE神经元的亚群中表达,并且仅在trkC1阴性神经元中引发细胞死亡,提示TrkC1及其配体NT-3在RE细胞存活中的作用。支持这一点的是,消耗NT-3的抗体可诱导RE细胞死亡,而外源应用NT-3则可减少死亡。此外,我们显示可以使用caspase抑制剂zVADfmk预防RE细胞死亡,这表明在正常发育过程中,RE细胞死于caspase依赖的程序性细胞死亡途径,可能是通过TrkC1减少的信号触发的。 (C)2000学术出版社。 [参考:37]

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