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首页> 外文期刊>The European Journal of Neuroscience >Homer 1a enhances spike-induced calcium influx via L-type calcium channels in neocortex pyramidal cells.
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Homer 1a enhances spike-induced calcium influx via L-type calcium channels in neocortex pyramidal cells.

机译:荷马1a通过新皮层锥体细胞中的L型钙通道增强了穗诱导的钙内流。

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The scaffold protein family Homer/Vesl serves to couple surface receptors or channels with endoplasmic calcium release channels. Homer 1a/Vesl-1S is regarded as regulating such coupling in an activity-dependent manner. The present calcium photometry and electrophysiological measurement revealed that Homer 1a up-regulates voltage-dependent calcium channels (VDCCs), depending on inositol-1,4,5-trisphosphate (IP(3)) receptors (IP(3)Rs). In rat neocortex pyramidal cells, intracellular injection by diffusion from the patch pipette (referred to as 'infusion') of Homer 1a protein enhanced spike-induced calcium increase, depending on both the protein concentration and spike frequency. Induction of this enhancement was disrupted by blockers of key molecules of the mGluR-IP(3) signalling pathway, including metabotropic glutamate receptors (mGluRs), phospholipase C and IP(3)Rs. However, infusion of IP(3) failed to mimic the effect of Homer 1a, suggesting requirement for a second Homer 1a-mediated signalling as well as the mGluR-IP(3) signalling. In contrast to the induction, maintenance of this enhancement was independent of the mGluR-IP(3) signalling, taking the form of augmented calcium influx via L-type VDCCs. Presumably due to the VDCC up-regulation, threshold currents for calcium spikes were reduced. Given that Homer 1a induction is thought to down-regulate neural excitability and hence somatic spike firing, this facilitation of calcium spikes concomitant with such attenuated firing may well have a critical impact on bi-directional synaptic plasticity.
机译:支架蛋白家族Homer / Vesl用于将表面受体或通道与内质钙释放通道偶联。荷马1a / Vesl-1S被视为以活动依赖性方式调节这种偶联。当前的钙光度法和电生理学测量表明,荷马1a上调依赖于电压的钙通道(VDCCs),具体取决于肌醇-1,4,5-三磷酸(IP(3))受体(IP(3)Rs)。在大鼠新皮层锥体细胞中,荷马1a蛋白质通过斑块移液管扩散(称为“输注”)进行细胞内注射,可增强刺突诱导的钙增加,具体取决于蛋白质浓度和刺突频率。这种增强的诱导被mGluR-IP(3)信号通路的关键分子的阻滞剂破坏,包括促代谢型谷氨酸受体(mGluRs),磷脂酶C和IP(3)Rs。但是,注入IP(3)未能模拟荷马1a的作用,这表明需要第二个荷马1a介导的信号以及mGluR-IP(3)信号。与诱导相反,这种增强的维持与mGluR-IP(3)信号无关,采取通过L型VDCC增强钙流入的形式。大概是由于VDCC上调,降低了钙尖峰的阈值电流。考虑到Homer 1a诱导被认为会下调神经兴奋性,从而降低体细胞的尖峰发射,因此这种钙离子尖峰与这种减弱的发射相关的促进作用可能会对双向突触可塑性产生重要影响。

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