Aschrafi Armaz, Sadtler Sven, Niculescu Cristina, Rettinger Jürgen, Schmalzing Günther
Department of Molecular Pharmacology, Technical University of Aachen, Wendlingweg 2, D-52074, Germany.
J Mol Biol. 2004 Sep 3;342(1):333-43. doi: 10.1016/j.jmb.2004.06.092.
Of the three major classes of ligand-gated ion channels, nicotinic receptors and ionotropic glutamate receptors are known to be organized as pentamers and tetramers, respectively. The architecture of the third class, P2X receptors, is under debate, although evidence for a trimeric assembly is accumulating. Here we provide biochemical evidence that in addition to the rapidly desensitising P2X1 and P2X3 receptors, the slowly desensitising subtypes P2X2, P2X4, and P2X5 are trimers of identical subunits. Similar (heteromeric) P2X subunits also formed trimers, as shown for co-expressed P2X1 and P2X2 subunits, which assembled efficiently to a P2X1+2 receptor that was exported to the plasma membrane. In contrast, P2X6 subunits, which are incapable of forming functional homomeric channels in Xenopus oocytes, were retained in the ER as apparent tetramers and high molecular mass aggregates. Altogether, we conclude from these data that a trimeric architecture is the structural hallmark of functional homomeric and heteromeric P2X receptors.
在三类主要的配体门控离子通道中,已知烟碱型受体和离子型谷氨酸受体分别由五个亚基和四个亚基组成。第三类,即P2X受体的结构仍存在争议,尽管三聚体组装的证据正在积累。在这里,我们提供了生化证据,表明除了快速脱敏的P2X1和P2X3受体外,缓慢脱敏的亚型P2X2、P2X4和P2X5是相同亚基的三聚体。相似的(异源的)P2X亚基也形成三聚体,如共表达的P2X1和P2X2亚基所示,它们有效地组装成一个P2X1+2受体,并转运到质膜。相反,在非洲爪蟾卵母细胞中不能形成功能性同源通道的P2X6亚基,以明显的四聚体和高分子量聚集体形式保留在内质网中。总之,我们从这些数据得出结论,三聚体结构是功能性同源和异源P2X受体的结构标志。