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电压诱导非洲爪蟾卵母细胞中机械敏感通道的缓慢激活和失活。

Voltage-induced slow activation and deactivation of mechanosensitive channels in Xenopus oocytes.

作者信息

Silberberg S D, Magleby K L

机构信息

Department of Life Sciences, Ben-Gurion University of the Negev, Beer Sheva, Israel.

出版信息

J Physiol. 1997 Dec 15;505 ( Pt 3)(Pt 3):551-69. doi: 10.1111/j.1469-7793.1997.551ba.x.

Abstract
  1. The relationship between stretch and voltage activation of mechanosensitive (MS) channels from Xenopus oocytes was studied in excised patches of membrane using the patch clamp technique. 2. As is characteristic of MS channels to oocytes, stretching the membrane by applying negative pressure to the patch pipette at -50 mV activated the MS channels rapidly. The channels then deactivated rapidly when the stretch was removed. The stretch-activated MS channels entered a main conductance level (45 pS) and one or more subconductance levels in the range of about 75-90% of the main conductance level. 3. In the absence of stretch, a depolarizing step from -50 to +50 mV activated apparent MS channels after long delays of typically 1-20 s (range, 100 ms to 6 min). Upon repolarization, the channels deactivated slowly with a single exponential (mean time constant of 4 s) or double exponential (mean time constants of 0.8 and 3 s) time course. 4. Delayed activation with depolarization and slow deactivation upon repolarization were also observed for apparent MS channels in on-cell patches. 5. The voltage-activated channels were cation selective and had the same selectivity and conductance levels as the stretch activated MS channels. Applying stretch during voltage-induced channel activity did not activate any additional channels, and the same maximal number of channels were typically activated by either stretch or by voltage. These observations suggest that voltage activates the same MS channels that are activated by stretch. 6. The opening of MS channels following steps to +50 mV occurred in an apparently co-operative manner in 70% of the excised patches containing multiple MS channels. 7. In the absence of stretch, the opening frequency and open probability of MS channels increased with depolarization in the examined voltage range of -60 to -20 mV. 8. Applying a brief stretch during the delay to activation at +50 mV activated the MS channels rapidly, which then remained active when the stretch was removed. In contrast, applying a brief stretch during the slow deactivation induced by stepping from +50 to -50 mV abruptly terminated the voltage induced channel activity upon release of the stretch and inhibited subsequent depolarization-induced activity. 9. Depolarizing steps from -50 to +50 mV inhibited any spontaneous channel activity that was present before the depolarizing step. If the potential was stepped back to -50 mV before the channels activated at +50 mV, a delayed activation could occur at -50 mV, followed by normal deactivation, indicating that the depolarizing step initiated activation processes that were initially masked by inhibition. 10. These observations suggest that voltage and stretch can induce different functional gating configurations of MS channels with associated structures, and that these different gating configurations can interconvert.
摘要
  1. 利用膜片钳技术,在非洲爪蟾卵母细胞的膜片上研究了机械敏感(MS)通道的拉伸与电压激活之间的关系。2. 对于卵母细胞的MS通道而言,其特征在于,在-50 mV时通过向膜片吸管施加负压来拉伸膜片会迅速激活MS通道。拉伸去除后,通道会迅速失活。拉伸激活的MS通道进入一个主电导水平(45 pS)以及一个或多个约为主电导水平75 - 90%范围内的亚电导水平。3. 在无拉伸的情况下,从-50 mV到+50 mV的去极化阶跃在通常1 - 20 s(范围为100 ms至6 min)的长时间延迟后激活了明显的MS通道。复极化时,通道以单指数(平均时间常数为4 s)或双指数(平均时间常数为0.8和3 s)的时间进程缓慢失活。4. 在细胞膜片上的明显MS通道中也观察到去极化时的延迟激活和复极化时的缓慢失活。5. 电压激活的通道具有阳离子选择性,并且与拉伸激活的MS通道具有相同的选择性和电导水平。在电压诱导的通道活动期间施加拉伸不会激活任何额外的通道,并且通常由拉伸或电压激活的通道最大数量相同。这些观察结果表明,电压激活的是与拉伸激活相同的MS通道。6. 在70%含有多个MS通道的膜片中,向+50 mV阶跃后MS通道的开放明显以协同方式发生。7. 在无拉伸的情况下,在所研究的-60至-20 mV电压范围内,MS通道的开放频率和开放概率随去极化而增加。8. 在延迟激活至+50 mV期间施加短暂拉伸会迅速激活MS通道,拉伸去除后通道仍保持激活状态。相反,在从+50 mV到-50 mV阶跃诱导的缓慢失活期间施加短暂拉伸,在拉伸释放时会突然终止电压诱导的通道活动,并抑制随后的去极化诱导活动。9. 从-50 mV到+50 mV的去极化阶跃抑制了去极化阶跃之前存在的任何自发通道活动。如果在通道在+50 mV激活之前将电位回拨到-50 mV,则在-50 mV可能会出现延迟激活,随后是正常失活,这表明去极化阶跃启动了最初被抑制掩盖的激活过程。10. 这些观察结果表明,电压和拉伸可以诱导MS通道具有相关结构的不同功能门控构型,并且这些不同的门控构型可以相互转换。

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