Buck F, Wang W, Harder S, Brathwaite C, Bruhn T O, Gershengorn M C
Institut für Zellbiochemie und Klinische Neurobiologie, Universitäts-Krankenhaus Eppendorf, Hamburg, Germany.
Endocrinology. 2000 Oct;141(10):3717-22. doi: 10.1210/endo.141.10.7716.
Juxtamembrane residues in the putative third intracellular (I3) loops of a number of G protein-coupled receptors (GPCRs) have been shown to be important for coupling to G proteins. According to standard hydropathy analysis, the I3 loop of the mouse TRH receptor type 1 (mTRH-R1) is composed of 51 amino acids from position-213 to position-263. We constructed deletion and site-specific I3 loop TRH-R mutants and studied their binding and TRH-stimulated signaling activities. As expected, the effects of these mutations on TRH binding were small (less than 5-fold decreases in affinity). No effect on TRH-stimulated signaling activity was found in a mutant receptor in which the I3 loop was shortened to 16 amino acids by deleting residues from Asp-226 to Ser-260. In contrast, mutants with deletions from Asp-222 to Ser-260 or from Asp-226 to Gln-263 exhibited reduced TRH-stimulated signaling. In the region near transmembrane helix 6, single site-specific substitution of either Arg-261 or Lys-262 by neutral glutamine had little effect on signaling, but mutant TRH-Rs that were substituted by glutamine at both basic residues exhibited reduced TRH-stimulated activity. The reduced signaling activity of this doubly substituted mutant was reversed by over expressing the a subunit of Gq. These data demonstrate that the juxtamembrane regions in the TRH-R I3 loop are important for coupling to Gq.
许多G蛋白偶联受体(GPCRs)假定的第三个细胞内环(I3)中的近膜残基已被证明对与G蛋白偶联很重要。根据标准的亲水性分析,小鼠1型促甲状腺激素释放激素受体(mTRH-R1)的I3环由从第213位到第263位的51个氨基酸组成。我们构建了缺失和位点特异性I3环TRH-R突变体,并研究了它们的结合和TRH刺激的信号传导活性。正如预期的那样,这些突变对TRH结合的影响很小(亲和力下降不到5倍)。在一个通过删除从Asp-226到Ser-260的残基而将I3环缩短至16个氨基酸的突变受体中,未发现对TRH刺激的信号传导活性有影响。相比之下,从Asp-222到Ser-260或从Asp-226到Gln-263缺失的突变体表现出TRH刺激的信号传导降低。在跨膜螺旋6附近的区域,将Arg-261或Lys-262中的任何一个单一位点特异性替换为中性谷氨酰胺对信号传导影响很小,但在两个碱性残基处都被谷氨酰胺替换的突变TRH-Rs表现出TRH刺激活性降低。通过过表达Gq的α亚基可以逆转这种双取代突变体降低的信号传导活性。这些数据表明,TRH-R I3环中的近膜区域对于与Gq偶联很重要。