Todd Paul A C, McCue Hannah V, Haynes Lee P, Barclay Jeff W, Burgoyne Robert D
Department of Cellular and Molecular Physiology, The Physiological Laboratory, Institute of Translational Medicine, University of Liverpool, Crown Street, Liverpool, L69 3BX, United Kingdom.
Sci Rep. 2016 Jul 20;6:30023. doi: 10.1038/srep30023.
Neuronal calcium sensor-1 (NCS-1) mediates changes in cellular function by regulating various target proteins. Many potential targets have been identified but the physiological significance of only a few has been established. Upon temperature elevation, Caenorhabditis elegans exhibits reversible paralysis. In the absence of NCS-1, worms show delayed onset and a shorter duration of paralysis. This phenotype can be rescued by re-expression of ncs-1 in AIY neurons. Mutants with defects in four potential NCS-1 targets (arf-1.1, pifk-1, trp-1 and trp-2) showed qualitatively similar phenotypes to ncs-1 null worms, although the effect of pifk-1 mutation on time to paralysis was considerably delayed. Inhibition of pifk-1 also resulted in a locomotion phenotype. Analysis of double mutants showed no additive effects between mutations in ncs-1 and trp-1 or trp-2. In contrast, double mutants of arf-1.1 and ncs-1 had an intermediate phenotype, consistent with NCS-1 and ARF-1.1 acting in the same pathway. Over-expression of arf-1.1 in the AIY neurons was sufficient to rescue partially the phenotype of both the arf-1.1 and the ncs-1 null worms. These findings suggest that ARF-1.1 interacts with NCS-1 in AIY neurons and potentially pifk-1 in the Ca(2+) signaling pathway that leads to inhibited locomotion at an elevated temperature.
神经元钙传感器-1(NCS-1)通过调节各种靶蛋白介导细胞功能的变化。已经鉴定出许多潜在的靶标,但仅确定了少数几个的生理意义。温度升高时,秀丽隐杆线虫会出现可逆性麻痹。在没有NCS-1的情况下,线虫表现出麻痹发作延迟和持续时间缩短。在AIY神经元中重新表达ncs-1可以挽救这种表型。在四个潜在的NCS-1靶标(arf-1.1、pifk-1、trp-1和trp-2)中存在缺陷的突变体表现出与ncs-1基因敲除线虫在性质上相似的表型,尽管pifk-1突变对麻痹时间的影响明显延迟。抑制pifk-1也会导致运动表型。对双突变体的分析表明,ncs-1与trp-1或trp-2的突变之间没有累加效应。相比之下,arf-1.1和ncs-1的双突变体具有中间表型,这与NCS-1和ARF-1.1在同一途径中起作用一致。在AIY神经元中过表达arf-1.1足以部分挽救arf-1.1和ncs-1基因敲除线虫的表型。这些发现表明,ARF-1.1在AIY神经元中与NCS-1相互作用,并可能在导致高温下运动受抑制的Ca(2+)信号通路中与pifk-1相互作用。