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乙酰胆碱受体通道选择性过滤器中的苏氨酸

Threonine in the selectivity filter of the acetylcholine receptor channel.

作者信息

Villarroel A, Sakmann B

机构信息

Abteilung Zellphysiologie, Max-Planck-Institut für Medizinische, Heidelberg, Germany.

出版信息

Biophys J. 1992 Apr;62(1):196-205; discussion 205-8. doi: 10.1016/S0006-3495(92)81805-2.

Abstract

The acetylcholine receptor (AChR) is a cation selective channel whose biophysical properties as well as its molecular composition are fairly well characterized. Previous studies on the rat muscle alpha-subunit indicate that a threonine residue located near the cytoplasmic side of the M2 segment is a determinant of ion flow. We have studied the role of this threonine in ionic selectivity by measuring conductance sequences for monovalent alkali cations and bionic reversal potentials of the wild type (alpha beta gamma delta channel) and two mutant channels in which this threonine was replaced by either valine (alpha T264V) or glycine (alpha T264G). For the wild type channel we found the selectivity sequence Rb greater than Cs greater than K greater than Na. The alpha T264V mutant channel had the sequence Rb greater than K greater than Cs greater than Na. The alpha T264G mutant channel on the other hand had the same selectivity sequence as the wild type, but larger permeability ratios Px/PNa for the larger cations. Conductance concentration curves indicate that the effect of both mutations is to change both the maximum conductance as well as the apparent binding constant of the ions to the channel. A difference in Mg2+ sensitivity between wild-type and mutant channels, which is a consequence of the differences in ion binding, was also found. The present results suggest that alpha T264 form part of the selectivity filter of the AChR channel were large ions are selected according to their dehydrated size.

摘要

乙酰胆碱受体(AChR)是一种阳离子选择性通道,其生物物理特性以及分子组成已得到相当充分的表征。先前对大鼠肌肉α亚基的研究表明,位于M2片段胞质侧附近的一个苏氨酸残基是离子流动的决定因素。我们通过测量野生型(αβγδ通道)和两个突变通道(其中该苏氨酸分别被缬氨酸替换为αT264V或被甘氨酸替换为αT264G)的单价碱金属阳离子的电导序列和双离子反转电位,研究了该苏氨酸在离子选择性中的作用。对于野生型通道,我们发现选择性序列为Rb>Cs>K>Na。αT264V突变通道的序列为Rb>K>Cs>Na。另一方面,αT264G突变通道具有与野生型相同的选择性序列,但对于较大阳离子的渗透比Px/PNa更大。电导浓度曲线表明,两种突变的作用都是改变最大电导以及离子与通道的表观结合常数。还发现了野生型和突变通道之间Mg2+敏感性的差异,这是离子结合差异的结果。目前的结果表明,αT264构成了AChR通道选择性过滤器的一部分,在该过滤器中,大离子根据其脱水大小被选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/93e4/1260517/2bfb642a0ad5/biophysj00100-0224-a.jpg

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