Channel-Opening Kinetic Mechanism for Human Wild-Type GluK2 and the M867I Mutant Kainate Receptor

被引:10
作者
Han, Yan
Wang, Congzhou
Park, Jae Seon
Niu, Li [1 ]
机构
[1] SUNY Albany, Dept Chem, Albany, NY 12222 USA
基金
美国国家卫生研究院;
关键词
FAMILY-BASED ASSOCIATION; PROTEIN-KINASE-A; GLUTAMATE RECEPTORS; AMPA RECEPTOR; GLUTAMATE-RECEPTOR-6; GENE; SUBUNIT STOICHIOMETRY; SYNAPTIC-TRANSMISSION; SPLICING VARIANTS; GLUR6; AUTISM;
D O I
10.1021/bi100819v
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
GluK2 is a kainate receptor subunit that is alternatively spliced at the C-terminus. Previous studies implicated GluK2 in autism. In particular, the methionine-to-isoleucine replacement at amino acid residue 867 (M867I) that can only occur in the longest isoform of the human GluK2 (hGluK2), as the disease (autism) mutation, is thought to cause gain-of-function. However, the kinetic properties of the wild-type hGluK2 and the functional consequence of this gain-of-function mutation at the molecular level are not well understood. To investigate whether the M867I mutation affects the channel properties of the human GluK2 kainate receptor, we have systematically characterized the rate and the equilibrium constants pertinent to channel opening and channel desensitization for this mutant and the wild-type hGluK2 receptor, along with the wildtype rat GluK2 kainate receptor (rGluK2) as the control. Our results show that the M867I mutation does not affect either the rate or the equilibrium constants of the channel opening but does slow down the channel desensitization rate by similar to 1.6-fold at saturating glutamate concentrations. It is possible that a consequence of this mutation on the desensitization rate is linked to facilitating the receptor trafficking and membrane expression, given the close proximity of M867 to the forward trafficking motif in the C-terminal sequence. By comparing the kinetic data of the wild-type human and rat GluK2 receptors, we also find that the human GluK2 has a similar to 3-fold smaller channel-opening rate constant but an identical channel-closing rate constant and thus a channel-opening probability of 0.85 vs 0.96 for rGluK2. Furthermore, the intrinsic equilibrium dissociation constant K-1 for hGluK2, like the EC50 value, is similar to 2-fold lower than rGluK2. Our results therefore suggest that the human GluK2 is relatively a slowly activating channel but more sensitive to glutamate, as compared to the rat ortholog, despite the fact that the human and rat forms share 99% sequence homology.
引用
收藏
页码:9207 / 9216
页数:10
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