Schaarschmidt Grit, Wegner Florian, Schwarz Sigrid C, Schmidt Hartmut, Schwarz Johannes
Department of Neurology, University of Leipzig, Leipzig, Germany.
PLoS One. 2009 Jul 8;4(7):e6168. doi: 10.1371/journal.pone.0006168.
Voltage-gated potassium (K(v)) channels are among the earliest ion channels to appear during brain development, suggesting a functional requirement for progenitor cell proliferation and/or differentiation. We tested this hypothesis, using human neural progenitor cells (hNPCs) as a model system.
METHODOLOGY/PRINCIPAL FINDINGS: In proliferating hNPCs a broad spectrum of K(v) channel subtypes was identified using quantitative real-time PCR with a predominant expression of the A-type channel K(v)4.2. In whole-cell patch-clamp recordings K(v) currents were separated into a large transient component characteristic for fast-inactivating A-type potassium channels (I(A)) and a small, sustained component produced by delayed-rectifying channels (I(K)). During differentiation the expression of I(A) as well as A-type channel transcripts dramatically decreased, while I(K) producing delayed-rectifiers were upregulated. Both K(v) currents were differentially inhibited by selective neurotoxins like phrixotoxin-1 and alpha-dendrotoxin as well as by antagonists like 4-aminopyridine, ammoniumchloride, tetraethylammonium chloride and quinidine. In viability and proliferation assays chronic inhibition of the A-type currents severely disturbed the cell cycle and precluded proper hNPC proliferation, while the blockade of delayed-rectifiers by alpha-dendrotoxin increased proliferation.
CONCLUSIONS/SIGNIFICANCE: These findings suggest that A-type potassium currents are essential for proper proliferation of immature multipotent hNPCs.
电压门控钾(K(v))通道是大脑发育过程中最早出现的离子通道之一,这表明其对祖细胞增殖和/或分化具有功能需求。我们使用人类神经祖细胞(hNPCs)作为模型系统来验证这一假设。
方法/主要发现:在增殖的hNPCs中,通过定量实时PCR鉴定出了广泛的K(v)通道亚型,其中A 型通道K(v)4.2表达占主导。在全细胞膜片钳记录中,K(v)电流被分离为快速失活的 A 型钾通道(I(A))特有的大瞬时成分和延迟整流通道产生的小的持续成分(I(K))。在分化过程中,I(A)以及 A 型通道转录本的表达显著下降,而产生延迟整流器的I(K)则上调。两种K(v)电流均受到选择性神经毒素如Phrixotoxin-1和α-树眼镜蛇毒素以及拮抗剂如4-氨基吡啶、氯化铵、四乙氯化铵和奎尼丁的不同程度抑制。在活力和增殖试验中,对 A 型电流的慢性抑制严重扰乱细胞周期并阻止hNPCs的正常增殖,而α-树眼镜蛇毒素对延迟整流器的阻断则增加了增殖。
结论/意义:这些发现表明,A 型钾电流对于未成熟多能hNPCs的正常增殖至关重要。