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非洲爪蟾卵母细胞中单个机械敏感通道的快速适应性

Rapid adaptation of single mechanosensitive channels in Xenopus oocytes.

作者信息

Hamill O P, McBride D W

机构信息

Section of Neurobiology and Behavior, Cornell University, Ithaca, NY 14853.

出版信息

Proc Natl Acad Sci U S A. 1992 Aug 15;89(16):7462-6. doi: 10.1073/pnas.89.16.7462.

Abstract

Mechanosensitive (MS) channels are expressed in a wide range of cell types and have been implicated in diverse functions, including osmoregulation and mechanoreception. The majority of previous studies on single MS channels have been carried out on nonsensory cells and have dealt with the steady-state properties of the channel. Here we measure the dynamic or nonstationary properties of the MS channel in Xenopus laevis oocytes. MS channels open transiently in response to a step change in suction applied to the membrane patch. This adaptive behavior occurs because of a reduction in open channel probability rather than a decrease in channel conductance. Double-step suction protocols indicate that adapted MS channels can be reactivated by application of stronger stimulation, consistent with a change in gating sensitivity rather than channel inactivation. Adaptation is highly voltage dependent, being most evident at resting or hyperpolarized potentials and absent at strongly positive potentials. Neither adaptation nor its voltage sensitivity requires the presence of extracellular Ca2+. Adaptation is fragile, dependent on patch history, and can be irreversibly abolished by moderate suction applied to the patch while MS channel activity is retained. Further suction can abolish MS channel activity without compromising the seal. We propose that the selective loss of adaptation and MS channel activity is due to different stages of membrane-cytoskeleton decoupling caused by the mechanical stresses associated with patch clamp recording.

摘要

机械敏感(MS)通道在多种细胞类型中表达,并涉及多种功能,包括渗透调节和机械感受。此前大多数关于单个MS通道的研究是在非感觉细胞上进行的,并且研究的是通道的稳态特性。在这里,我们测量非洲爪蟾卵母细胞中MS通道的动态或非稳态特性。MS通道会因施加于膜片钳的吸力阶跃变化而短暂开放。这种适应性行为是由于开放通道概率降低而非通道电导降低所致。双步吸力方案表明,适应性MS通道可通过施加更强刺激而重新激活,这与门控敏感性变化而非通道失活一致。适应性高度依赖电压,在静息或超极化电位时最为明显,在强正电位时则不存在。适应性及其电压敏感性均不依赖细胞外Ca2+的存在。适应性很脆弱,依赖于膜片钳记录的历史,并且在保持MS通道活性的同时,对膜片钳施加适度吸力可不可逆地消除适应性。进一步的吸力可在不破坏封接的情况下消除MS通道活性。我们认为,适应性和MS通道活性的选择性丧失是由膜片钳记录相关机械应力导致的膜 - 细胞骨架解耦的不同阶段所致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed3b/49730/00548f9445c2/pnas01090-0186-a.jpg

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