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流动电位揭示了心脏钙释放通道中一个对兰尼碱敏感的短选择性过滤器。

Streaming potentials reveal a short ryanodine-sensitive selectivity filter in cardiac Ca2+ release channel.

作者信息

Tu Q, Vélez P, Brodwick M, Fill M

机构信息

Department of Physiology and Biophysics, University of Texas Medical Branch, Galveston 77555-0641.

出版信息

Biophys J. 1994 Dec;67(6):2280-5. doi: 10.1016/S0006-3495(94)80713-1.

DOI:10.1016/S0006-3495(94)80713-1
PMID:7696468
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1225612/
Abstract

Single cardiac sarcoplasmic reticulum Ca2+ release channels were reconstituted into planar bilayer membranes. Streaming potentials were measured in osmotically asymmetric solutions as a shift in the reversal potential. Potential changes induced by water movement through the bilayer (concentration polarization) and reduced ion activity in the concentrated non-electrolyte solutions were determined using valinomycin. In 400 mM symmetrical CsCH3SO3, the average streaming potential was 2.74 +/- 0.2 mV (n = 5, mean +/- SE; 2 osmol/kg) and independent of the osmoticant used (sucrose or diglycine). Identical streaming potential magnitudes were obtained regardless of which side of the membrane the nonelectrolyte was placed. This suggests that the narrow part of the pore where single file diffusion occurs is relatively short (i.e., accommodates a minimum of 3 H2O molecules). This value is comparable to similar measurements in a variety of surface membrane channels. Ryanodine-modified channels had no measurable streaming potential, an increased Tris+ permeability relative to Cs+, and decreased divalent selectivity (PCs/PTris 5.1 +/- 1.1 to 1.7 +/- 0.3, n = 3; PBa/PCs 8.2 +/- 0.7 to 1.8 +/- 0.5, n = 4). Cation/anion selectivity was essentially unaltered in ryanodine-modified channels. These results suggests that the narrow region of the permeation pathway (i.e., the selectivity filter) is relatively short and widens after ryanodine modification.

摘要

将单个心肌肌浆网Ca2+释放通道重构到平面双层膜中。在渗透不对称溶液中测量流动电位,作为反转电位的偏移。使用缬氨霉素测定由水通过双层膜的移动(浓度极化)和浓缩非电解质溶液中离子活性降低引起的电位变化。在400 mM对称的CsCH3SO3中,平均流动电位为2.74±0.2 mV(n = 5,平均值±标准误;2 osmol/kg),且与所用的渗透剂(蔗糖或二甘氨酸)无关。无论非电解质置于膜的哪一侧,均获得相同大小的流动电位。这表明发生单排扩散的孔的狭窄部分相对较短(即,容纳至少3个H2O分子)。该值与各种表面膜通道中的类似测量结果相当。经ryanodine修饰的通道没有可测量的流动电位,相对于Cs+,Tris+通透性增加,二价选择性降低(PCs/PTris从5.1±1.1降至1.7±0.3,n = 3;PBa/PCs从8.2±0.7降至1.8±0.5,n = 4)。经ryanodine修饰的通道中阳离子/阴离子选择性基本未改变。这些结果表明,渗透途径的狭窄区域(即选择性过滤器)相对较短,并且在ryanodine修饰后变宽。

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