Grudzinska Joanna, Schemm Rudolf, Haeger Svenja, Nicke Annette, Schmalzing Guenther, Betz Heinrich, Laube Bodo
Department of Neurochemistry, Max-Planck-Institute for Brain Research, Deutschordenstrasse 46, D-60528 Frankfurt am Main, Germany.
Neuron. 2005 Mar 3;45(5):727-39. doi: 10.1016/j.neuron.2005.01.028.
Inhibitory glycine receptors (GlyRs) regulate motor coordination and sensory signal processing in spinal cord and other brain regions. GlyRs are pentameric proteins composed of membrane-spanning alpha and beta subunits. Here, site-directed mutagenesis combined with homology modeling based on the crystal structure of the acetylcholine binding protein identified key ligand binding residues of recombinant homooligomeric alpha1 and heterooligomeric alpha1beta GlyRs. This disclosed two highly conserved, oppositely charged residues located on adjacent subunit interfaces as being crucial for agonist binding. In addition, the beta subunit was found to determine the ligand binding properties of heterooligomeric GlyRs. Expression of an alpha1beta tandem construct and affinity purification of metabolically labeled GlyRs confirmed a subunit stoichiometry of 2alpha3beta. Because the beta subunit anchors GlyRs at synaptic sites, our results have important implications for the biosynthesis, clustering, and pharmacology of synaptic GlyRs.
抑制性甘氨酸受体(GlyRs)调节脊髓和其他脑区的运动协调和感觉信号处理。GlyRs是由跨膜α和β亚基组成的五聚体蛋白。在此,基于乙酰胆碱结合蛋白的晶体结构,通过定点诱变结合同源建模确定了重组同聚α1和异聚α1β GlyRs的关键配体结合残基。这揭示了位于相邻亚基界面上的两个高度保守、带相反电荷的残基对于激动剂结合至关重要。此外,发现β亚基决定了异聚GlyRs的配体结合特性。α1β串联构建体的表达和代谢标记的GlyRs的亲和纯化证实了亚基化学计量比为2α3β。由于β亚基将GlyRs锚定在突触位点,我们的结果对突触GlyRs的生物合成、聚集和药理学具有重要意义。