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Characterization of ADP-ribosyl cyclase 1-like (ARC1-like) activity and NAADP signaling during slow muscle cell development in zebrafish embryos

机译:斑马鱼胚胎中缓慢肌细胞发育过程中ADP-核糖基环化酶1样(ARC1样)活性和NAADP信号的表征。

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摘要

We recently demonstrated the requirement of two-pore channel type 2 (TPC2)-mediated Ca2+ release during slow muscle cell differentiation and motor circuit maturation in intact zebrafish embryos. However, the upstream trigger of TPC2/Ca2+ signaling during these developmental processes remains unclear. Nicotinic acid adenine dinucleotide phosphate (NAADP) is a potent Ca2+ mobilizing messenger, which is suggested to target TPC2 in mediating the release of Ca2+ from acidic vesicles. Here, we report the molecular cloning of the zebrafish ADP ribosyl cyclase (ARC) homolog (i.e., ARC1-like), which is the putative enzyme for generating NAADP. We characterized the expression of the arc1-like transcript and the NAADP level between ~16 hours post-fertilization (hpf) and ~48 hpf in whole zebrafish embryos. We showed that when ARC1-like was fused with either EGFP or tdTomato, it was localized in the plasma membrane, and associated with intracellular organelles, such as the acidic vesicles, Golgi complex and sarcoplasmic reticulum, in primary muscle cell cultures. Morpholino (MO)-mediated knockdown of arc1-like or pharmacological inhibition of ARC1 (via treatment with nicotinamide), led to an attenuation of Ca2+ signaling and disruption of slow muscle cell development. In addition, the injection of arc1-like mRNA into ARC1-like morphants partially rescued the Ca2+ signals and slow muscle cell development. Together, our data might suggest a link between ARC1-like, NAADP, TPC2 and Ca2+ signaling during zebrafish myogenesis.
机译:我们最近证明了在完整的斑马鱼胚胎中,缓慢的肌肉细胞分化和运动回路成熟过程中需要两孔通道2型(TPC2)介导的Ca 2 + 释放。然而,在这些发育过程中TPC2 / Ca 2 + 信号的上游触发机制仍不清楚。烟酸腺嘌呤二核苷酸磷酸酯(NAADP)是一种有效的Ca 2 + 动员分子,建议将其靶向TPC2介导Ca 2 + 从酸性囊泡中释放。在这里,我们报告了斑马鱼ADP核糖基环化酶(ARC)同源物(即ARC1样)的分子克隆,这是可能产生NAADP的酶。我们表征了整个斑马鱼胚胎受精后约16小时(hpf)和约48 hpf之间的arc1样转录物的表达和NAADP水平。我们显示,当ARC1样与EGFP或tdTomato融合时,它位于质膜中,并与原代肌肉细胞培养物中的细胞内细胞器(例如酸性囊泡,高尔基复合体和肌浆网)相关。 Morpholino(MO)介导的arc1样敲除或ARC1的药理抑制作用(通过烟酰胺治疗)导致Ca 2 + 信号的减弱和慢肌细胞发育的破坏。另外,将arc1样mRNA注入ARC1样形态蛋白可以部分拯救Ca 2 + 信号并减缓肌肉细胞的发育。在一起,我们的数据可能表明斑马鱼成肌过程中类ARC1,NAADP,TPC2和Ca 2 + 信号之间存在联系。

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