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Human autoantibodies specific for the α1A calcium channel subunit reduce both P-type and Q-type calcium currents in cerebellar neurons

机译:特异性针对α1A钙通道亚基的人类自身抗体可降低小脑神经元的P型和Q型钙电流

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摘要

The pharmacological properties of voltage-dependent calcium channel (VDCC) subtypes appear mainly to be determined by the α1 pore-forming subunit but, whether P-and Q-type VDCCs are encoded by the same α1 gene presently is unresolved. To investigate this, we used IgG antibodies to presynaptic VDCCs at motor nerve terminals that underlie muscle weakness in the autoimmune Lambert–Eaton myasthenic syndrome (LEMS). We first studied their action on changes in intracellular free Ca2+ concentration [Ca2+]i in human embryonic kidney (HEK293) cell lines expressing different combinations of human recombinant VDCC subunits. Incubation for 18 h with LEMS IgG (2 mg/ml) caused a significant dose-dependent reduction in the K+-stimulated [Ca2+]i increase in the α1A cell line but not in the α1B, α1C, α1D, and α1E cell lines, establishing the α1A subunit as the target for these autoantibodies. Exploiting this specificity, we incubated cultured rat cerebellar neurones with LEMS IgG and observed a reduction in P-type current in Purkinje cells and both P- and Q-type currents in granule cells. These data are consistent with the hypothesis that the α1A gene encodes for the pore-forming subunit of both P-type and Q-type VDCCs.
机译:电压依赖性钙通道(VDCC)亚型的药理特性似乎主要由α1孔形成亚基决定,但目前尚不能确定P型和Q型VDCC是否由相同的α1基因编码。为了对此进行研究,我们在运动神经末梢使用了IgG抗体对突触前VDCC进行了检测,这些神经末梢是自身免疫性Lambert-Eaton肌无力综合症(LEMS)中肌肉无力的基础。我们首先研究了它们对表达人重组VDCC不同组合的人胚胎肾(HEK293)细胞系中细胞内游离Ca 2 + 浓度[Ca 2 + ] i的变化的作用。亚单位。与LEMS IgG(2 mg / ml)一起孵育18 h导致α1A中K + 刺激的[Ca 2 + ] i的显着剂量依赖性降低细胞系,但不在α1B,α1C,α1D和α1E细胞系中,因此建立了α1A亚基作为这些自身抗体的靶标。利用这种特异性,我们将培养的大鼠小脑神经元与LEMS IgG一起孵育,并观察到Purkinje细胞中P型电流的减少以及颗粒细胞中P型和Q型电流的减少。这些数据与α1A基因编码P型和Q型VDCC的成孔亚基的假设相一致。

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