首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >The pore properties of human nociceptor channel TRPA1 evaluated in single channel recordings.
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The pore properties of human nociceptor channel TRPA1 evaluated in single channel recordings.

机译:在单通道记录中评估了人类伤害感受器通道TRPA1的孔特性。

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摘要

TRPA channels detect stimuli of different sensory modalities, including a broad spectrum of chemosensory stimuli, noxious stimuli associated with tissue damage and inflammation, mechanical stimuli, and thermal stimuli. Despite a growing understanding of potential modulators, agonists, and antagonists for these channels, the exact mechanisms of channel regulation and activation remain mostly unknown or controversial and widely debated. Relatively little is also known about the basic biophysical parameters of both native and heterologously expressed TRPA channels. Here we use conventional single channel inside-out and outside-out patch recording from the human TRPA1 channel transiently expressed in human embryonic kidney 293T cells to characterize the selectivity of the channel for inorganic mono-/divalent and organic monovalent cations in the presence of allylisothiocyanate (AITC). We show the relative permeability of the hTRPA1 channel to inorganic cations to be:and to organic cations:Na(+)(1.0)>/= dimethylamine (0.99)>trimethylamine (0.7)>tetramethylammonium (0.4)>N-methyl-d-glucamine (0.1). Activation of the hTRPA1 channels by AITC appears to recruit the channels to a conformational state with an increased permeability to large organic cations. The pore of the channels in this state can be characterized as dilated by approximately 1-2.5 A. These findings provide important insight into the basic fundamental properties and function of TRPA1 channels in general and human TRPA1 channel in particular.
机译:TRPA通道可检测不同感觉方式的刺激,包括广泛的化学感觉刺激,与组织损伤和炎症相关的有害刺激,机械刺激和热刺激。尽管人们对这些通道的潜在调节剂,激动剂和拮抗剂的了解日益加深,但通道调节和激活的确切机制仍是未知之数或引起争议,并受到广泛争议。关于天然和异源表达的TRPA通道的基本生物物理参数还知之甚少。在这里,我们使用从人类胚胎肾脏293T细胞中瞬时表达的人类TRPA1通道记录的常规单通道由内而外的补丁记录,以表征在烯丙基异硫氰酸酯存在下通道对无机单价/二价和有机单价阳离子的选择性(AITC)。我们显示hTRPA1通道相对于无机阳离子的相对渗透率为:和相对于有机阳离子:Na(+)(1.0)> / =二甲胺(0.99)>三甲胺(0.7)>四甲基铵(0.4)> N-甲基-d -葡糖胺(0.1)。 AITC激活hTRPA1通道似乎使通道恢复为构象状态,并且对大型有机阳离子的渗透性增加。在此状态下,通道的孔的特征是大约1-2.5A。这些发现为深入了解TRPA1通道的基本基本特性和功能(尤其是人类TRPA1通道)提供了重要的见识。

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