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豚鼠视网膜视杆细胞中超极化门控电流的特性及功能作用

Properties and functional roles of hyperpolarization-gated currents in guinea-pig retinal rods.

作者信息

Demontis G C, Longoni B, Barcaro U, Cervetto L

机构信息

Dipartimento di Psichiatria, Neurobiologia, Farmacologia e Biotecnologie, Universita' di Pisa, Pisa I-56126, Italy.

出版信息

J Physiol. 1999 Mar 15;515 ( Pt 3)(Pt 3):813-28. doi: 10.1111/j.1469-7793.1999.813ab.x.

Abstract
  1. The inward rectification induced by membrane hyperpolarization was studied in adult guinea-pig rods by the perforated-patch-clamp technique. 2. CsCl blocked the rectification observed in both voltage- and current-clamp recordings at voltages negative to -60 mV, while BaCl2 blocked the inward relaxation observed at voltages positive to -60 mV. The current activated at -90 mV had a low selectivity between sodium and potassium and reversed at -31.0 mV. 3. These observations suggest that two inward rectifiers are present in guinea-pig rods: a hyperpolarization-activated (Ih) and a hyperpolarization-deactivated (Ikx) current. The functional roles of Ih and Ikx were evaluated by stimulating rods with currents sinusoidally modulated in time. 4. Rods behave like bandpass amplifiers, with a peak amplification of 1.5 at about 2 Hz. For hyperpolarizations that mainly gate Ikx, amplification and phase shifts are fully accounted for by a rod membrane analogue model that includes an inductance. For hyperpolarizations that also gate Ih, a harmonic distortion became apparent. 5. Bandpass filtering and amplification of rod signals, associated with Ih and Ikx gating by membrane hyperpolarization, are strategically located to extend, beyond the limits imposed by the slow phototransductive cascade, the temporal resolution of signals spreading to the rod synapse.
摘要
  1. 采用穿孔膜片钳技术研究成年豚鼠视杆细胞中膜超极化诱导的内向整流。2. CsCl在电压钳和电流钳记录中,在电压负于 -60 mV时阻断观察到的整流,而BaCl2在电压正于 -60 mV时阻断观察到的内向松弛。在 -90 mV激活的电流对钠和钾的选择性较低,反转电位为 -31.0 mV。3. 这些观察结果表明豚鼠视杆细胞中存在两种内向整流器:一种超极化激活电流(Ih)和一种超极化失活电流(Ikx)。通过用随时间正弦调制的电流刺激视杆细胞来评估Ih和Ikx的功能作用。4. 视杆细胞表现得像带通放大器,在约2 Hz时峰值放大倍数为1.5。对于主要开启Ikx的超极化,放大倍数和相移完全由包含电感的视杆细胞膜模拟模型解释。对于也开启Ih的超极化,谐波失真变得明显。5. 与膜超极化对Ih和Ikx的门控相关的视杆细胞信号的带通滤波和放大,其位置经过精心安排,以突破缓慢光转导级联所施加的限制,扩展传播到视杆细胞突触的信号的时间分辨率。

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