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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >DOC2A and DOC2B are sensors for neuronal activity with unique calcium-dependent and kinetic properties.
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DOC2A and DOC2B are sensors for neuronal activity with unique calcium-dependent and kinetic properties.

机译:DOC2A和DOC2B是具有独特的钙依赖性和动力学性质的神经元活动传感器。

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Elevation of the intracellular calcium concentration ([Ca2+]i) to levels below 1 microm alters synaptic transmission and induces short-term plasticity. To identify calcium sensors involved in this signalling, we investigated soluble C2 domain-containing proteins and found that both DOC2A and DOC2B are modulated by submicromolar calcium levels. Fluorescent-tagged DOC2A and DOC2B translocated to plasma membranes after [Ca2+]i elevation. DOC2B translocation preceded DOC2A translocation in cells co-expressing both isoforms. Half-maximal translocation occurred at 450 and 175 nm[Ca2+]i for DOC2A and DOC2B, respectively. This large difference in calcium sensitivity was accompanied by a modest kinetic difference (halftimes, respectively, 2.6 and 2.0 s). The calcium sensitivity of DOC2 isoforms can be explained by predicted topologies of their C2A domains. Consistently, neutralization of aspartates D218 and D220 in DOC2B changed its calcium affinity. In neurones, both DOC2 isoforms were reversibly recruited to the plasma membrane during trains of action potentials. Consistent with its higher calcium sensitivity, DOC2B translocated at lower depolarization frequencies. Styryl dye uptake experiments in hippocampal neurones suggest that the overexpression of mutated DOC2B alters the synaptic activity. We conclude that both DOC2A and DOC2B are regulated by neuronal activity, and hypothesize that their calcium-dependent translocation may regulate synaptic activity.
机译:细胞内钙浓度([Ca2 +] i)升高到1微米以下会改变突触传递并引起短期可塑性。为了识别参与此信号传导的钙传感器,我们研究了可溶性C2域蛋白,发现DOC2A和DOC2B均受亚微摩尔钙水平的调节。 [Ca2 +] i升高后,荧光标记的DOC2A和DOC2B易位至质膜。在共表达两种同工型的细胞中,DOC2B易位先于DOC2A易位。 DOC2A和DOC2B分别在450和175 nm [Ca2 +] i处出现最大位移。钙敏感性的巨大差异伴随着适度的动力学差异(分别为2.6和2.0 s的一半时间)。 DOC2亚型的钙敏感性可以通过其C2A域的预测拓扑来解释。一致地,DOC2B中天冬氨酸D218和D220的中和改变了其钙亲和力。在神经元中,在一系列动作电位期间,两种DOC2亚型都可逆地募集到质膜上。与其较高的钙敏感性一致,DOC2B在较低的去极化频率下易位。海马神经元中苯乙烯基染料的摄取实验表明,突变的DOC2B的过表达改变了突触的活性。我们得出结论,DOC2A和DOC2B均受神经元活动的调节,并假设它们的钙依赖性易位可能调节突触活性。

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