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首页> 外文期刊>Bioscience Reports >Purinergic stimulation of K+-dependent Na+/Ca2+ exchanger isoform 4 requires dual activation by PKC and CaMKII
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Purinergic stimulation of K+-dependent Na+/Ca2+ exchanger isoform 4 requires dual activation by PKC and CaMKII

机译:嘌呤能刺激依赖K +的Na + / Ca2 +交换异构体4需要PKC和CaMKII双重激活

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K+-dependent Na+/Ca2+-exchanger isoform 4 (NCXK4) is one of the most broadly expressed members of the NCKX (K+-dependent Na+/Ca2+-exchanger) family. Recent data indicate that NCKX4 plays a critical role in controlling normal Ca2+ signal dynamics in olfactory and other neurons. Synaptic Ca2+ dynamics are modulated by purinergic regulation, mediated by ATP released from synaptic vesicles or from neighbouring glial cells. Previous studies have focused on modulation of Ca2+ entry pathways that initiate signalling. Here we have investigated purinergic regulation of NCKX4, a powerful extrusion pathway that assists in terminating Ca2+ signals. NCKX4 activity was stimulated by ATP through activation of the P2Y receptor signalling pathway. Stimulation required dual activation of PKC (protein kinase C) and CaMKII (Ca2+/calmodulin-dependent protein kinase II). Mutating T312, a putative PKC phosphorylation site on NCKX4, partially prevented purinergic stimulation. These data illustrate how purinergic regulation can shape the dynamics of Ca2+ signalling by activating a signal damping and termination pathway.
机译:K +依赖性Na + / Ca2 +交换异构体4(NCXK4)是NCKX(K +依赖性Na + / Ca2 +交换子)家族中表达最广泛的成员之一。最新数据表明,NCKX4在嗅觉神经元和其他神经元的正常Ca2 +信号动力学控制中起关键作用。嘌呤能调节由突触小泡或邻近神经胶质细胞释放的ATP介导的嘌呤能调节来调节突触Ca2 +动力学。先前的研究集中在启动信号的Ca2 +进入途径的调节上。在这里,我们研究了NCKX4的嘌呤能调节,这是一种强大的挤压途径,可协助终止Ca2 +信号。 ATP通过激活P2Y受体信号传导途径刺激NCKX4活性。刺激需要双重激活PKC(蛋白激酶C)和CaMKII(Ca2 + /钙调蛋白依赖性蛋白激酶II)。突变T312是NCKX4上一个假定的PKC磷酸化位点,部分阻止了嘌呤能刺激。这些数据说明了嘌呤能调节如何通过激活信号阻尼和终止途径来改变Ca2 +信号的动力学。

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