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本文引用的文献

1
Protective effect of the KCNMB1 E65K genetic polymorphism against diastolic hypertension in aging women and its relevance to cardiovascular risk.KCNMB1基因E65K多态性对老年女性舒张期高血压的保护作用及其与心血管风险的相关性
Circ Res. 2005 Dec 9;97(12):1360-5. doi: 10.1161/01.RES.0000196557.93717.95. Epub 2005 Nov 17.
2
Gating and ionic currents reveal how the BKCa channel's Ca2+ sensitivity is enhanced by its beta1 subunit.门控和离子电流揭示了BKCa通道的β1亚基如何增强其对Ca2+的敏感性。
J Gen Physiol. 2005 Oct;126(4):393-412. doi: 10.1085/jgp.200509346.
3
Differential effects of beta 1 and beta 2 subunits on BK channel activity.β1和β2亚基对大电导钙激活钾通道活性的不同影响。
J Gen Physiol. 2005 Apr;125(4):395-411. doi: 10.1085/jgp.200409236. Epub 2005 Mar 14.
4
Recognition of transmembrane helices by the endoplasmic reticulum translocon.内质网转位子对跨膜螺旋的识别。
Nature. 2005 Jan 27;433(7024):377-81. doi: 10.1038/nature03216.
5
Assembly of a Ca2+-dependent BK channel signaling complex by binding to beta2 adrenergic receptor.通过与β2肾上腺素能受体结合组装Ca2+依赖性大电导钙激活钾通道信号复合物。
EMBO J. 2004 Jun 2;23(11):2196-205. doi: 10.1038/sj.emboj.7600228. Epub 2004 May 13.
6
Gain-of-function mutation in the KCNMB1 potassium channel subunit is associated with low prevalence of diastolic hypertension.钾通道亚基KCNMB1的功能获得性突变与舒张期高血压的低患病率相关。
J Clin Invest. 2004 Apr;113(7):1032-9. doi: 10.1172/JCI20347.
7
The organization of engaged and quiescent translocons in the endoplasmic reticulum of mammalian cells.哺乳动物细胞内质网中处于活跃状态和静止状态的转位子的组织方式。
J Cell Biol. 2004 Mar 29;164(7):997-1007. doi: 10.1083/jcb.200312079.
8
Molecular mechanism of signal sequence orientation in the endoplasmic reticulum.内质网中信号序列定向的分子机制。
EMBO J. 2003 Jul 15;22(14):3645-53. doi: 10.1093/emboj/cdg361.
9
Redox-sensitive extracellular gates formed by auxiliary beta subunits of calcium-activated potassium channels.由钙激活钾通道的辅助β亚基形成的氧化还原敏感型细胞外门控。
Nat Struct Biol. 2003 Jun;10(6):448-54. doi: 10.1038/nsb932.
10
Multiple regulatory sites in large-conductance calcium-activated potassium channels.大电导钙激活钾通道中的多个调节位点。
Nature. 2002 Aug 22;418(6900):880-4. doi: 10.1038/nature00956.

确定β1亚基调节所需的BK通道结构域。

Defining the BK channel domains required for beta1-subunit modulation.

作者信息

Morrow John P, Zakharov Sergey I, Liu Guoxia, Yang Lin, Sok Andrea J, Marx Steven O

机构信息

Division of Cardiology, Department of Medicine, Columbia University College of Physicians and Surgeons, New York, NY 10032, USA.

出版信息

Proc Natl Acad Sci U S A. 2006 Mar 28;103(13):5096-101. doi: 10.1073/pnas.0600907103. Epub 2006 Mar 20.

DOI:10.1073/pnas.0600907103
PMID:16549765
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1458800/
Abstract

In a wide variety of cell types, including neurons and smooth muscle cells, activation of the large-conductance voltage- and Ca(2+)-activated K(+) (BK) channels causes transient membrane hyperpolarization, thereby regulating cellular excitability. Similar to other voltage-gated ion channels, BK channels, a tetramer of alpha-subunits, associate with auxiliary beta-subunits in a tissue-specific manner, modifying the channel's gating properties. The BK beta1-subunit, which is expressed in smooth muscle, increases the apparent Ca(2+) sensitivity (marked by a hyperpolarizing shift in the conductance-voltage relationship at a given Ca(2+) concentration), slows macroscopic activation and deactivation, and is required for channel activation by 17beta-estradiol. The beta1-subunit is essential for normal regulation of vascular smooth muscle contractility and blood pressure. Little is known, however, about the molecular mechanisms of beta1-subunit modulation of alpha-subunits. Here we show that the beta1-subunit's modulation of the Ca(2+) and 17beta-estradiol sensitivities can be dissociated from its effects on gating kinetics by truncation of the alpha-subunit's extracellular N-terminal residues. The BK alpha-subunit N terminus interacts uniquely with the beta1-subunit: beta2 regulation of the alpha-subunit is unaltered by truncation of the N terminus. Although the functional interaction of alpha and beta1 requires the N-terminal tail of alpha, the physical association requires the S1, S2, and S3 transmembrane helices of alpha.

摘要

在包括神经元和平滑肌细胞在内的多种细胞类型中,大电导电压和钙激活钾(BK)通道的激活会导致短暂的膜超极化,从而调节细胞兴奋性。与其他电压门控离子通道类似,BK通道是α亚基的四聚体,以组织特异性方式与辅助β亚基结合,改变通道的门控特性。在平滑肌中表达的BK β1亚基增加了表观钙敏感性(在给定钙浓度下,由电导-电压关系中的超极化移位标记),减慢了宏观激活和失活,并且是17β-雌二醇激活通道所必需的。β1亚基对于血管平滑肌收缩性和血压的正常调节至关重要。然而,关于β1亚基对α亚基调节的分子机制知之甚少。在这里,我们表明,通过截断α亚基的细胞外N端残基,β1亚基对钙和17β-雌二醇敏感性的调节可以与其对门控动力学的影响分离。BK α亚基的N端与β1亚基有独特的相互作用:截断N端不会改变β2对α亚基的调节。虽然α和β1的功能相互作用需要α的N端尾巴,但物理结合需要α的S1、S2和S3跨膜螺旋。