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兰伯特-伊顿综合征抗体对人肺癌细胞钙电流和胞吐作用的抑制

Inhibition of calcium currents and exocytosis by Lambert-Eaton syndrome antibodies in human lung cancer cells.

作者信息

Viglione M P, O'Shaughnessy T J, Kim Y I

机构信息

Department of Biomedical Engineering, University of Virginia School of Medicine, Charlottesville 22908, USA.

出版信息

J Physiol. 1995 Oct 15;488 ( Pt 2)(Pt 2):303-17. doi: 10.1113/jphysiol.1995.sp020968.

Abstract
  1. Human small-cell lung cancer (SCLC) cells are believed to express the antigens responsible for the production of pathological antibodies in the Lambert-Eaton syndrome (LES), a Ca2+ channel disorder in which quantal transmitter release from the motor nerve terminal is impaired. Whole-cell patch-clamp techniques were used to study the voltage-dependent Ca2+ channels expressed by H146 SCLC cells and the effects of LES antibodies on these channels. The types of Ca2+ channels were determined using biophysical properties and pharmacological sensitivity to several antagonists. 2. Whole-cell Ca2+ currents (ICa) in SCLC cells are sensitive to the dihydropyridine (DHP) nicardipine, omega-conotoxin GVIA (omega-CgTX GVIA) and omega-agatoxin IVA (omega-AgTX IVA). Nicardipine at 100 nM and 10 microM reduced ICa by 35 and 45% (n = 38 cells), respectively, while omega-CgTX GVIA (1 microM) inhibited ICa by 32% (n = 31). Application of omega-AgTX IVA at 50 and 100 nM to the cancer cells decreased ICa by 41 and 42%, respectively (n = 22). 3. Measurement of cell membrane capacitance (Cm) revealed that Ca(2+)-dependent exocytosis underlies the secretory activity of SCLC cells. Exocytosis, when induced by step depolarizing pulses and measured by increases in Cm, was markedly inhibited by nicardipine (10 microM) and omega-AgTX IVA (100 nM). In contrast, omega-CgTX GVIA (1 microM) was not as effective in altering increases in Cm. 4. From negative (-80 mV) and depolarized (-40 mV) holding potentials, both peak and plateau ICa were inhibited by the presence of LES antibodies (1 mg ml-1 IgG). LES serum also reduced depolarization-induced increases in Cm by 48% (n = 15). 5. To determine whether the LES antibodies are downregulating a specific type(s) of Ca2+ channel, nicardipine (10 microM), omega-CgTX GVIA (1 microM) or omega-AgTX IVA (100 nM) was applied to tumour cells that had been previously exposed to LES serum for 24 h. The most pronounced change was that omega-AgTX IVA was 38-84% less effective at reducing ICa after the IgG treatment. The effectiveness of nicardipine was diminished by 18% after incubation with the LES antibodies, whereas the omega-CgTX GVIA was seen to be more effective. These results suggest that LES IgG downregulates P-type Ca2+ channels and, possibly, to a lesser extent L-type channels. 6. In view of recent evidence that P-type Ca2+ channels mediate cholinergic transmitter release at the mammalian neuromuscular junction (NMJ), the expression of P-type Ca2+ channels in the SCLC cells and the reactivity of LES IgG with these channels support the hypothesis that P-type Ca2+ channels in these cancer cells may trigger the autoantibody production in this disorder. The antibodies so produced are implicated in the functional impairment of the Ca2+ channels characteristic of LES.
摘要
  1. 人类小细胞肺癌(SCLC)细胞被认为表达了在兰伯特-伊顿综合征(LES)中产生病理性抗体的抗原,LES是一种钙通道疾病,其中运动神经末梢的量子递质释放受损。采用全细胞膜片钳技术研究H146 SCLC细胞表达的电压依赖性钙通道以及LES抗体对这些通道的影响。利用生物物理特性和对几种拮抗剂的药理敏感性来确定钙通道的类型。2. SCLC细胞中的全细胞钙电流(ICa)对二氢吡啶(DHP)尼卡地平、ω-芋螺毒素GVIA(ω-CgTX GVIA)和ω-阿加毒素IVA(ω-AgTX IVA)敏感。100 nM和10 μM的尼卡地平分别使ICa降低35%和45%(n = 38个细胞),而1 μM的ω-CgTX GVIA使ICa降低32%(n = 31)。向癌细胞施加50 nM和100 nM的ω-AgTX IVA分别使ICa降低41%和42%(n = 22)。3. 细胞膜电容(Cm)的测量表明,钙依赖性胞吐作用是SCLC细胞分泌活性的基础。当通过阶跃去极化脉冲诱导并通过Cm增加来测量时,胞吐作用受到尼卡地平(10 μM)和ω-AgTX IVA(100 nM)的显著抑制。相比之下,1 μM的ω-CgTX GVIA在改变Cm增加方面效果不明显。4. 从负(-80 mV)和去极化(-40 mV)的钳制电位来看,LES抗体(1 mg/ml IgG)的存在抑制了ICa的峰值和平台期。LES血清也使去极化诱导的Cm增加降低了48%(n = 15)。5. 为了确定LES抗体是否下调特定类型的钙通道,将尼卡地平(10 μM)、ω-CgTX GVIA(1 μM)或ω-AgTX IVA(100 nM)应用于先前暴露于LES血清24小时的肿瘤细胞。最显著的变化是,IgG处理后,ω-AgTX IVA在降低ICa方面的效果降低了38 - 84%。与LES抗体孵育后,尼卡地平的有效性降低了18%,而ω-CgTX GVIA则更有效。这些结果表明,LES IgG下调P型钙通道,可能在较小程度上下调L型通道。6. 鉴于最近的证据表明P型钙通道介导哺乳动物神经肌肉接头(NMJ)处的胆碱能递质释放,SCLC细胞中P型钙通道的表达以及LES IgG与这些通道的反应性支持了这样的假设,即这些癌细胞中的P型钙通道可能引发这种疾病中的自身抗体产生。如此产生的抗体与LES特有的钙通道功能损害有关。

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