Lysine 445 is a molecular indicator of subunit‐specific AMPA receptor binding domains

J. S. S. Sikes, T. Verdoorn
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Abstract

Despite strong homology between subunits of AMPA-type glutamate receptors, heteromeric assemblies in different brain regions vary in subunit composition and functional properties. We have previously shown that charge substitution at K445 decreases the apparent potency of AMPA for GluR-A receptors, although an analogous mutation is a low conductance B subunit of AB heteromers did not diminish AMPA potency. To examine the subunit selectivity of K445, we now measure the apparent potency of AMPA and glutamate at recombinant homomeric receptors containing the high-conductance, unedited (586Q) GluR-B subunit (GluR-B(Q)) using two-electrode voltage-clamp. We find the decrease in apparent potency of AMPA is recapitulated for homomeric GluR-B(Q)K449E receptors, and is rescued by coexpression with wild-type GluR-A. These data are consistent with the hypothesis that AMPAR subunit composition is critical to agonist-dependent receptor activation, and suggest that GluR-A plays a dominant role in mediating receptor activation by AMPA.
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赖氨酸445是亚基特异性AMPA受体结合域的分子指标
尽管ampa型谷氨酸受体亚基之间具有很强的同源性,但不同脑区的异聚体在亚基组成和功能特性上存在差异。我们之前的研究表明,K445的电荷取代降低了AMPA对GluR-A受体的表观效价,尽管类似的突变是AB异构体的低电导B亚基并没有降低AMPA的效价。为了检查K445的亚基选择性,我们现在使用双电极电压钳测量AMPA和谷氨酸在含有高电导,未编辑的(586Q) GluR-B亚基(GluR-B(Q))的重组同源受体上的表观效价。我们发现AMPA在同源GluR-B(Q)K449E受体上的表观效力下降,并通过与野生型GluR-A共表达而得到挽救。这些数据与AMPA亚基组成对激动剂依赖性受体激活至关重要的假设一致,并表明GluR-A在AMPA介导受体激活中起主导作用。
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