Wu S, Wright R A, Rockey P K, Burgett S G, Arnold J S, Rosteck P R, Johnson B G, Schoepp D D, Belagaje R M
Research Technology and Protein Division, Drop code 0424, Lilly Research Laboratories, Eli Lilly and Company, Indianapolis, IN 46285, USA.
Brain Res Mol Brain Res. 1998 Jan;53(1-2):88-97. doi: 10.1016/s0169-328x(97)00277-5.
Cloning and expression in a stable mammalian cell line co-transfected with a glutamate transporter (RGT cells) were used as tools for studying the functions and pharmacological properties of group III metabotropic glutamate receptors (mGluRs). Complementary DNAs (cDNAs) encoding the human mGluR4, human mGluR7, and human mGluR8 were isolated from human cerebellum, fetal brain or retinal cDNA libraries. The human mGluR4, mGluR7 and mGluR8 receptors were 912, 915 and 908 amino acid residues long and share 67-70% amino acid similarity with each other and 42-45% similarity with the members of mGluR subgroups I and II. The human mGluR4 and mGluR7 had amino acid identity of 96% and 99.5% with rat mGluR4 and 7, respectively, whereas the human mGluR8 has 98.8% amino acid identity with the mouse mGluR8. The nucleotide and amino acid sequences in the coding region of human mGluR4 and mGluR7 were found to be identical to the previously published sequences by Flor et al. and Makoff et al. Following stable expression in RGT cells, highly significant inhibitions of forskolin stimulation of cAMP production by group III agonists were found for each receptor. The relative potencies of the group III agonist L-AP4 varied greatly between the group III clones, being mGluR8>mGluR4 >> mGluR7. The reported group II mGluR agonist L-CCG-I was a highly potent mGluR8 agonist (EC50=0.35 microM), with significant agonist activities at both mGluR4 (EC50=3.7 microM) and mGluR7 (EC50=47 microM). The antagonist potency of the purported group III mGluR antagonist MPPG also varied among the receptors being human mGluR8 >> mGluR4 = mGluR7. The expression and second messenger coupling of human group III mGluRs expressed in the RGT cell line are useful to clearly define the subtype selectivities of mGluR ligands.
克隆编码人代谢型谷氨酸受体4(mGluR4)、人代谢型谷氨酸受体7(mGluR7)和人代谢型谷氨酸受体8(mGluR8)的互补DNA(cDNA),并将其在与谷氨酸转运体共转染的稳定哺乳动物细胞系(RGT细胞)中表达,以此作为研究III组代谢型谷氨酸受体(mGluRs)功能和药理学特性的工具。编码人mGluR4、人mGluR7和人mGluR8的cDNA从小脑、胎儿脑或视网膜cDNA文库中分离得到。人mGluR4、mGluR7和mGluR8受体分别由912、915和908个氨基酸残基组成,彼此间氨基酸相似性为67 - 70%,与mGluR I和II亚组成员的相似性为42 - 45%。人mGluR4和mGluR7与大鼠mGluR4和7的氨基酸同一性分别为96%和99.5%,而人mGluR8与小鼠mGluR8的氨基酸同一性为98.