Suppr超能文献

尾草履虫中负责钾离子诱导向后游动的钙离子电导的鉴定。

Identification of the Ca2+ conductance responsible for K+-induced backward swimming in Paramecium caudatum.

作者信息

Oami K, Takahashi M

机构信息

Institute of Biological Sciences, University of Tsukuba, Tsukuba, Ibaraki 305-8572, Japan.

出版信息

J Membr Biol. 2002 Nov 15;190(2):159-65. doi: 10.1007/s00232-002-1031-7.

Abstract

Membrane potential responses of Paramecium caudatum to an application of K+-rich solution were examined to understand the mechanisms underlying K+-induced backward swimming. A wild-type cell impaled by a microelectrode produced action potentials followed by a sustained depolarization in response to an application of a K+-rich test solution. After termination of the application, a prolongation of the depolarization (depolarizing after-potential) took place. Behavioral mutants incapable of exhibiting K+-induced backward swimming did not show depolarizing afterpotentials. Upon short application of K+-rich solution, the timing and duration of the ciliary reversal of the wild-type cell coincided well with the K+-induced depolarization. The duration of the depolarizing afterpotential decreased as the duration of the application increased. The depolarizing afterpotential recovered slowly after it had been suppressed by a preceding application of the K+-rich solution. By injection of an outward current into the wild-type cell, the action potentials were evoked normally during the period when the K+-induced depolarizing afterpotential was suppressed. We concluded that the prolongation of the depolarizing membrane potential response following the application of the K+-rich solution represents the Ca2+ conductance responsible for the K+-induced backward swimming in P. caudatum and that the characteristics of the K+-induced Ca2+ conductance are distinct from those of the Ca2+ conductance responsible for the action potentials.

摘要

为了了解钾离子诱导草履虫向后游动的潜在机制,研究了尾草履虫对富含钾离子溶液施加的膜电位反应。用微电极刺入的野生型细胞在施加富含钾离子的测试溶液时产生动作电位,随后是持续的去极化。在施加终止后,去极化出现延长(去极化后电位)。不能表现出钾离子诱导向后游动的行为突变体未显示去极化后电位。在短时间施加富含钾离子的溶液时,野生型细胞纤毛反转的时间和持续时间与钾离子诱导的去极化很好地吻合。去极化后电位的持续时间随着施加时间的增加而减少。在被先前施加的富含钾离子的溶液抑制后,去极化后电位恢复缓慢。通过向野生型细胞注入外向电流,在钾离子诱导的去极化后电位被抑制的期间,动作电位正常诱发。我们得出结论,施加富含钾离子的溶液后去极化膜电位反应的延长代表了负责尾草履虫中钾离子诱导向后游动的钙电导,并且钾离子诱导的钙电导的特征与负责动作电位的钙电导的特征不同。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验