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Permeation and Rectification in Canonical Transient Receptor Potential-6 (TRPC6) Channels

机译:规范瞬态受体电位6(TRPC6)通道中的渗透和整流。

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摘要

Transient receptor potential-6 channels are widely expressed cation channels that play a role in regulating Ca2+ dynamics, especially during G protein-coupled receptor signaling. The permeation of cations through TRPC6 is complex and the relative permeability to Ca2+ relative to monovalent cations appears to be highly voltage-dependent and is reduced upon membrane depolarization. Many investigators have observed complex current-voltage (I-V) relationships in recordings of TRPC6 channels, which often manifest as flattening of I-V curves between 0 and +40 mV and negative to -60 mV. These features are especially common in recordings from TRPC6 channels expressed in heterologous expression systems. Indeed, it is sometimes argued that marked rectification at both negative and positive membrane potentials is a defining feature of TRPC6, and that recordings in which these features are reduced or absent cannot reflect activity of TRPC6. Here we present a review of the literature to show that complex rectification is not seen in every cell type expressing TRPC6, even when comparing recordings made from the same groups of investigators, or in recordings from what is nominally the same heterologous expression system. Therefore other criteria, such as gene knockout or knockdown, or the use of newly emerging selective blockers, must be used to ascertain that a given current reflects activity of endogenously expressed TRPC6 channels. We also discuss the possibility that complex rectification may not be an intrinsic property of TRPC6 in cells where it is observed, and may instead reflect presence of endogenous substances that cause voltage-dependent inhibition of the channels.
机译:瞬态受体电位6通道是广泛表达的阳离子通道,在调节Ca 2 + 的动力学过程中,特别是在G蛋白偶联受体信号传导过程中起着重要作用。阳离子通过TRPC6的渗透非常复杂,相对于一价阳离子,Ca 2 + 的相对磁导率似乎与电压有关,并且在膜去极化时降低。许多研究人员已经在TRPC6通道的记录中观察到复杂的电流-电压(I-V)关系,这通常表现为I-V曲线在0到+40 mV之间和从负到-60 mV之间趋于平坦。这些功能在异源表达系统中表达的TRPC6通道的录音中尤为常见。确实,有时有人争辩说,在负膜电位和正膜电位都进行了明显的整流是TRPC6的基本特征,而减少或不存在这些特征的录音不能反映出TRPC6的活性。在这里,我们对文献进行综述,以显示即使在比较来自同一组研究者的录音或名义上相同的异源表达系统的录音时,在表达TRPC6的每种细胞类型中均未见到复杂的整流作用。因此,必须使用其他标准,例如基因敲除或敲除,或使用新出现的选择性阻滞剂,来确定给定电流反映了内源表达的TRPC6通道的活性。我们还讨论了复杂整流可能不是TRPC6在观察到的细胞中的固有特性的可能性,而是可能反映导致电压依赖性抑制通道的内源性物质的存在。

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