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类TASK钾通道在颈动脉体氧感受中的作用。

The role of TASK-like K+ channels in oxygen sensing in the carotid body.

作者信息

Buckler Keith J, Williams Beatrice A, Orozco Rodrigo Varas, Wyatt Christopher N

机构信息

University Laboratory of Physiology, Parks Road, Oxford OX1 3PT, UK.

出版信息

Novartis Found Symp. 2006;272:73-85; discussion 85-94, 131-40.

Abstract

The carotid body plays an important role in initiating protective responses to hypoxemia. The primary oxygen sensing cells are the glomus or type 1 cells. Hypoxia evokes the secretion of neurotransmitters from these cells which then excite afferent nerves. This response is mediated via membrane depolarization and voltage-gated Ca2+ entry. Studies from this laboratory have revealed that membrane depolarization in response to hypoxia is primarily the result of inhibition of background K+ channels which show strong similarities to the acid sensitive tandem-P-domain K+ channels TASK-1 and TASK-3. The background K+ channels of type-1 cells are also very sensitive to inhibition of mitochondrial energy metabolism and, in excised patches, appear to be directly activated by ATP. Thus these TASK-like background channels would appear to confer the ability to sense changes in oxygen levels, pH and metabolism upon the type 1 cell. The key issue of whether the effects of hypoxia are mediated through changes in metabolism remains unanswered but the effects of inhibition of mitochondrial energy metabolism and of hypoxia upon background K+ channels is mutually exclusive suggesting that there is a close link between metabolism and oxygen sensing in the type 1 cell.

摘要

颈动脉体在引发对低氧血症的保护性反应中起重要作用。主要的氧感受细胞是球细胞或1型细胞。低氧会引发这些细胞分泌神经递质,进而刺激传入神经。这种反应是通过膜去极化和电压门控Ca2+内流介导的。本实验室的研究表明,低氧引起的膜去极化主要是由于背景K+通道受到抑制,这些通道与酸敏感的串联P结构域K+通道TASK-1和TASK-3有很强的相似性。1型细胞的背景K+通道对线粒体能量代谢的抑制也非常敏感,在膜片钳实验中,似乎能被ATP直接激活。因此,这些类似TASK的背景通道似乎赋予了1型细胞感知氧水平、pH值和代谢变化的能力。低氧的影响是否通过代谢变化介导这一关键问题仍未得到解答,但线粒体能量代谢抑制和低氧对背景K+通道的影响是相互排斥的,这表明1型细胞中代谢与氧感受之间存在密切联系。

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