Havlickova Michaela, Blahos Jaroslav, Brabet Isabelle, Liu Jianfeng, Hruskova Bohdana, Prézeau Laurent, Pin Jean-Philippe
Department of Molecular Pharmacology, Institute of Experimental Medicine, Czech Academy of Science, Videnska 1083, 142 20 Prague 4, Czech Republic.
J Biol Chem. 2003 Sep 12;278(37):35063-70. doi: 10.1074/jbc.M306555200. Epub 2003 Jun 26.
Heptahelical receptor coupling selectivity to G-proteins is controlled by a large contact area that involves several portions of the receptor and each subunit of the G-protein. In the G-protein alpha subunit, the C-terminal 5 residues, the N terminus, and the alpha N-beta 1 and alpha 4-alpha 5 loops play important roles. On the receptor side, both the second and third (i2 and i3) intracellular loops as well as the C-terminal tail probably contact these different regions of the G-protein. It is now accepted that the C terminus of the alpha subunit binds in a cavity formed by the i2 and i3 loops. Among the various G-protein-coupled receptors (GPCRs), class III receptors that include metabotropic glutamate (mGlu) receptors greatly differ from the rhodopsin-like GPCRs, but the contact zone between these receptors and the G-protein is less understood. The C terminus of the alpha subunit has been shown to play a pivotal role in the selective recognition of class III GPCRs. Indeed, the mGlu2 and mGlu4 and -8 receptors can discriminate between alpha subunits that differ at the level of their C-terminal end only (such as Gqo and Gqz). Here, we examine the role of the i2 loop of mGluRs in the selective recognition of this region of the alpha subunit. To that aim, we analyzed the coupling properties of mGlu2 and mGlu4 or -8 receptors and chimeras containing the i2 loop of the converse receptor to G-protein alpha subunits that only differ by their C termini (Gqo,Gqz, and their point mutants). Our data demonstrate that the central portion of the i2 loop is responsible for the selective recognition of the C-terminal end of the alpha subunit, especially the residue on position -4. These data are consistent with the proposal that the C-terminal end of the G-protein alpha subunit interacts with residues in a cavity formed by the i2 and i3 loops in class III GPCRs, as reported for class I GPCRs.
七螺旋受体与G蛋白的偶联选择性由一个较大的接触区域控制,该区域涉及受体的几个部分以及G蛋白的每个亚基。在G蛋白α亚基中,C末端的5个残基、N末端以及αN-β1和α4-α5环起着重要作用。在受体方面,第二和第三(i2和i3)细胞内环以及C末端尾巴可能与G蛋白的这些不同区域接触。现在人们普遍认为,α亚基的C末端结合在由i2和i3环形成的腔内。在各种G蛋白偶联受体(GPCR)中,包括代谢型谷氨酸(mGlu)受体在内的III类受体与视紫红质样GPCR有很大不同,但这些受体与G蛋白之间的接触区域了解较少。α亚基的C末端已被证明在III类GPCR的选择性识别中起关键作用。实际上,mGlu2、mGlu4和-8受体仅能区分在C末端水平不同的α亚基(如Gqo和Gqz)。在这里,我们研究了mGluRs的i2环在α亚基该区域选择性识别中的作用。为此,我们分析了mGlu2、mGlu4或-8受体以及含有反向受体i2环的嵌合体与仅在C末端不同的G蛋白α亚基(Gqo、Gqz及其点突变体)的偶联特性。我们的数据表明,i2环的中央部分负责α亚基C末端的选择性识别,尤其是-4位的残基。这些数据与如下观点一致:正如I类GPCR的报道,G蛋白α亚基的C末端与III类GPCR中由i2和i3环形成的腔内的残基相互作用。