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外部孔道残基介导大鼠骨骼肌μ1型钠通道的缓慢失活。

External pore residue mediates slow inactivation in mu 1 rat skeletal muscle sodium channels.

作者信息

Balser J R, Nuss H B, Chiamvimonvat N, Pérez-García M T, Marban E, Tomaselli G F

机构信息

Department of Medicine, Johns Hopkins School of Medicine, Baltimore, MD 21205, USA.

出版信息

J Physiol. 1996 Jul 15;494 ( Pt 2)(Pt 2):431-42. doi: 10.1113/jphysiol.1996.sp021503.

Abstract
  1. Upon depolarization, voltage-gated sodium channels assume non-conducting inactivated states which may be characterized as "fast' or "slow' depending on the length of the repolarization period needed for recovery. Skeletal muscle Na+ channel alpha-subunits expressed in Xenopus laevis oocytes display anomalous gating behaviour, with substantial slow inactivation after brief depolarizations. We exploited this kinetic behaviour to examine the structural basis for slow inactivation. 2. While fast inactivation in Na+ channels is mediated by cytoplasmic occlusion of the pore by III-IV linker residues, the structural features of slow inactivation are unknown. Since external pore-lining residues modulate C-type inactivation in potassium channels, we performed serial cysteine mutagenesis in the permeation loop (P-loop) of the rat skeletal muscle Na+ channel (mu 1) to determine whether similarly placed residues are involved in Na+ channel slow inactivation. 3. Wild-type and mutant alpha-subunits were heterologously expressed in Xenopus oocytes, and Na+ currents were recorded using a two-electrode voltage clamp. Slow inactivation after brief depolarizations was eliminated by the W402C mutation in domain I. Cysteine substitution of the homologous tryptophan residues in domains II, III and IV did not alter slow inactivation. 4. Analogous to the W402C mutation, coexpression of the wild-type alpha-subunit with rat brain Na+ channel beta 1-subunit attenuated slow inactivation. However, the W402C mutation imposed a delay on recovery from fast inactivation, while beta 1-subunit coexpression did not. We propose that the W402C mutation and the beta 1-subunit modulate gating through distinct mechanisms. 5. Removal of fast inactivation in wild-type alpha-subunits with the III-IV linker mutation I1303Q; F1304Q; M1305Q markedly slowed the development of slow inactivation. We propose that slow inactivation in Na+ channels involves conformational changes in the external pore. Mutations that affect fast and slow inactivation appear to interact despite their remote positions in the channel.
摘要
  1. 去极化时,电压门控钠通道进入非传导性失活状态,根据恢复所需复极化期的长短,可将其特征描述为“快速”或“缓慢”失活。在非洲爪蟾卵母细胞中表达的骨骼肌钠通道α亚基表现出异常的门控行为,短暂去极化后会出现明显的缓慢失活。我们利用这种动力学行为来研究缓慢失活的结构基础。2. 虽然钠通道中的快速失活是由III-IV连接子残基对孔道的胞质阻塞介导的,但缓慢失活的结构特征尚不清楚。由于外部孔道内衬残基调节钾通道中的C型失活,我们在大鼠骨骼肌钠通道(μ1)的通透环(P环)中进行了系列半胱氨酸诱变,以确定位置相似的残基是否参与钠通道的缓慢失活。3. 野生型和突变型α亚基在非洲爪蟾卵母细胞中异源表达,使用双电极电压钳记录钠电流。结构域I中的W402C突变消除了短暂去极化后的缓慢失活。结构域II、III和IV中同源色氨酸残基的半胱氨酸替代并未改变缓慢失活。4. 与W402C突变类似,野生型α亚基与大鼠脑钠通道β1亚基共表达减弱了缓慢失活。然而,W402C突变使快速失活的恢复出现延迟,而β1亚基共表达则没有。我们提出W402C突变和β1亚基通过不同机制调节门控。5. 用III-IV连接子突变I1303Q;F1304Q;M1305Q去除野生型α亚基中的快速失活,显著减缓了缓慢失活的发展。我们提出钠通道中的缓慢失活涉及外部孔道的构象变化。影响快速和缓慢失活的突变尽管在通道中位置较远,但似乎相互作用。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62f5/1160645/4d3d3158fb88/jphysiol00397-0119-a.jpg

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