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首页> 外文期刊>Biochemistry (Moscow). Supplement, Series A. Membrane and cell biology >Identification of TREK-2 K~+ Channels in Human Mesenchymal Stromal Cells
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Identification of TREK-2 K~+ Channels in Human Mesenchymal Stromal Cells

机译:人间质基质细胞TREK-2 K〜+通道的鉴定

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The maintenance of pluripotency of mesenchymal stromal cells (MSCs), their proliferation and initiation of differentiation may critically depend on functional expression of ion channels. Despite such a possibility, mechanisms of electrogenesis in MSCs remain poorly understood. In particular, little is known about a variety of ion channels active in resting MSCs or activated upon MSC stimulation. Here we aimed at uncovering ion channels operating in MSCs, including those being active at rest, using the patch clamp technique and inhibitory analysis. In trying to evaluate a contribution of anion channels in MSC resting potential, we employed a number of diverse inhibitors of anion channels and transporters, including niflumic acid (NFA). Basically, NFA caused hyperpolarization of MSCs that was accompanied by a marked increase in ion conductance of their plasma membranes. The blockage of Cl~– channels could not underlie such a NFA effect, given that cells dialyzed with a CsCl solution were weakly or negligibly sensitive to this blocker. This and other findings indicated that NFA affected the MSC ion permeability not by targeting Cl~– channels but by stimulating K~+ channels. NFA-activated K~+ current was TEA and diltiazem blockable, and K~+ channels involved were potentiated from outside by solution acidification and Cu2+ ions. Taken together, the data obtained implicated two-pore domain K~+ channels of the TREK-2 subtype in mediating stimulatory effects of NFA on MSCs. The notable inference from our work is that TREK-2 channels should be expressed and functional virtually in every MSC, given that all cells examined by us (n > 100) similarly responded to NFA by increasing their TREK-2-like K~+ conductance.
机译:间充质基质细胞(MSCs)多能性的维持,它们的增殖和分化的开始可能关键取决于离子通道的功能表达。尽管有这种可能性,但对MSC中电发生的机理仍知之甚少。特别地,对于在静止的MSC中活跃或在MSC刺激时激活的各种离子通道知之甚少。在这里,我们旨在使用膜片钳技术和抑制分析来揭示在MSC中运行的离子通道,包括那些在静止状态下活跃的离子通道。在尝试评估阴离子通道对MSC静息潜力的贡献时,我们采用了多种阴离子通道和转运蛋白抑制剂,包括尼氟酸(NFA)。基本上,NFA引起MSC的超极化,并伴随着其质膜离子电导的显着增加。鉴于用CsCl溶液透析的细胞对该阻滞剂敏感程度微弱或可忽略不计,因此Cl〜–通道的阻滞不能构成这种NFA效应。这一发现和其他发现表明,NFA不是通过靶向Cl〜–通道而是通过刺激K〜+通道来影响MSC离子渗透性。 NFA激活的K〜+电流是TEA和地尔硫卓可阻断的,所涉及的K〜+通道通过溶液酸化和Cu2 +离子从外部增强。两者合计,获得的数据牵涉TREK-2亚型的两孔结构域K +通道介导NFA对MSC的刺激作用。从我们的工作中得出的显着推论是,鉴于我们检查的所有细胞(n> 100)都通过增加其TREK-2样K〜+电导率类似地响应NFA,因此应该在每个MSC中实际上表达TREK-2通道并起作用。 。

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