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钙对龟毛细胞机械电换能电流的作用。

The actions of calcium on the mechano-electrical transducer current of turtle hair cells.

作者信息

Crawford A C, Evans M G, Fettiplace R

机构信息

Physiological Laboratory, University of Cambridge.

出版信息

J Physiol. 1991 Mar;434:369-98. doi: 10.1113/jphysiol.1991.sp018475.

Abstract
  1. Mechano-electrical transducer currents evoked by deflections of the hair bundle were recorded in turtle isolated hair cells under whole-cell voltage clamp. The outcome of perfusing with solutions of reduced Ca2+ concentration was investigated. 2. The transducer current was roughly doubled by lowering the concentration of divalent cations from normal (2.2 mM-Mg2+, 2.8 mM-Ca2+) to 0 Mg2+, 0.5 mM-Ca2+. No significant effects on the current's kinetics or reversal potential, or on the current-displacement relationship, were noted. 3. If the Ca2+ concentration was lowered to 50 microM (with no Mg2+), there was about a threefold increase in the maximum current but other changes, including loss of adaptation and a decreased slope and negative shift in the current-displacement relationship, were also observed. As a result, more than half the peak transducer current became activated at the resting position of the hair bundle compared to about a tenth in the control solution. 4. The extra changes manifest during perfusion with 50 microM-Ca2+ had also been seen when the cell was held at positive potentials near the Ca2+ equilibrium potential. This supports the view that some consequences of reduced external Ca2+ stem from a decline in its intracellular concentration. 5. With 20 microM-Ca2+, a standing inward current developed and the cell became unresponsive to mechanical stimuli, which may be explained by the transducer channels being fully activated at the resting position of the bundle. 6. The results are interpreted in terms of a dual action of Ca2+: an external block of the transducer channel which reduces the maximum current, and an intracellular effect on the position and slope of the current-displacement relationship; the latter effect can be modelled by internal Ca2+ stabilizing one of the closed states of the channel. 7. During perfusion with 1 microM-Ca2+, the holding current transiently increased but then returned to near its control level. There was a concomitant irreversible loss of sensitivity to hair bundle displacements which we suggest is due to rupture of the mechanical linkages to the transducer channel. 8. Following treatment with 1 microM-Ca2+, single-channel currents with an amplitude of -9 pA at -85 mV were sometimes visible in the whole-cell recording. The probability of such channels being open could be modulated by small deflections of the hair bundle which indicates that they may be the mechano-electrical transducer channels or conductance about 100 pS. 9. Open- and closed-time distributions for the channel were fitted by single exponentials, the mean open time at rest being approximately 1 ms. The mean open time was increased and the mean closed time decreased for movements of the hair bundle towards the kinocilium.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在全细胞电压钳制下,记录了乌龟离体毛细胞中毛束偏转诱发的机电转换电流。研究了用降低Ca2+浓度的溶液灌注的结果。2. 将二价阳离子浓度从正常水平(2.2 mM - Mg2+,2.8 mM - Ca2+)降至0 Mg2+,0.5 mM - Ca2+时,转换电流大致翻倍。未观察到对电流动力学、反转电位或电流-位移关系有显著影响。3. 若将Ca2+浓度降至50 μM(无Mg2+),最大电流增加约三倍,但还观察到其他变化,包括适应性丧失、电流-位移关系的斜率降低和负向偏移。结果,与对照溶液中约十分之一相比,超过一半的转换电流峰值在毛束静止位置被激活。4. 当细胞保持在接近Ca2+平衡电位的正电位时,在用50 μM - Ca2+灌注期间也观察到了额外的变化。这支持了外部Ca2+降低的一些后果源于其细胞内浓度下降的观点。5. 当Ca2+浓度为20 μM时,出现持续内向电流,细胞对机械刺激无反应,这可能是由于转换通道在毛束静止位置完全激活所致。6. 结果根据Ca2+的双重作用来解释:对转换通道的外部阻断降低了最大电流,以及对电流-位移关系的位置和斜率的细胞内效应;后一种效应可以通过内部Ca2+稳定通道的一种关闭状态来模拟。7. 在用1 μM - Ca2+灌注期间,保持电流短暂增加,但随后恢复到接近对照水平。同时对毛束位移的敏感性出现不可逆丧失,我们认为这是由于与转换通道的机械连接断裂所致。8. 在用1 μM - Ca2+处理后,在全细胞记录中有时可见在-85 mV时幅度为-9 pA的单通道电流。毛束的小偏转可调节此类通道开放的概率,这表明它们可能是机电转换通道或电导约为100 pS。9. 通道的开放和关闭时间分布用单指数拟合,静止时的平均开放时间约为1 ms。毛束向动纤毛移动时,平均开放时间增加,平均关闭时间减少。(摘要截于400字)

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