Opposite effects of Zn on the in vitro binding of [3H]LY354740 to recombinant and native metabotropic glutamate 2 and 3 receptors

被引:7
作者
Malherbe, P
Richards, JG
Broger, C
Zenner, MT
Messer, J
Kratzeisen, C
Nakanishi, S
Mutel, V
机构
[1] F Hoffmann La Roche & Co Ltd, PRBD N, Div Pharma, Discovery Res CNS, CH-4070 Basel, Switzerland
[2] Kyoto Univ, Fac Med, Dept Biol Sci, Sakyo Ku, Kyoto, Japan
关键词
knockout; metabotropic glutamate receptor; mutagenesis/chimeric approaches; receptor-binding studies; Zn effect;
D O I
10.1111/j.1471-4159.2005.03176.x
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
We investigated the effect of Zn on agonist binding to both recombinant and native mGlu2 and mGlu3 receptors. Zn had a biphasic inhibitory effect on recombinant mGlu2 with IC50 values for the high- and low-affinity components of 60 +/- 10 mu m and 2 +/- 0.7 mm, respectively. Zn induced a complex biphasic effect of inhibition and enhancement of [H-3]LY354740 binding to mGlu3. Observations with a series of chimeric mGlu2/3 receptors suggest that the Zn effect resides in the N-terminal domain of mGlu2 and mGlu3. We observed that the His56 of mGlu2, which corresponds to Asp63 in mGlu3 was largely accountable for the second phase of the Zn effect. As revealed by quantitative receptor radioautography, the addition of up to 100 mu m Zn to brain sections of wild-type mice resulted in significant decreases in binding density in most brain regions. In particular, the mid-molecular layer of the dentate gyrus (DGmol) and the CA1 lacunosum moleculare of hippocampus (CA1-LMol) showed reductions of 62 and 67%, respectively. In contrast, the addition of 300 mu m Zn to brain sections of mGlu2(-/-) mice caused large increases in binding density of 289 and 242% in DGmol and CA1-LMol, respectively. Therefore, Zn might play a role as a physiological modulator of group II mGlu receptor function.
引用
收藏
页码:150 / 160
页数:11
相关论文
共 50 条
[11]   Pharmacological manipulation of mGlu2 receptors influences cognitive performance in the rodent [J].
Higgins, GA ;
Ballard, TM ;
Kew, JNC ;
Richards, JG ;
Kemp, JA ;
Adam, G ;
Woltering, T ;
Nakanishi, S ;
Mutel, V .
NEUROPHARMACOLOGY, 2004, 46 (07) :907-917
[12]   Metal ion-mediated agonism and agonist enhancement in melanocortin MC1 and MC4 receptors [J].
Holst, B ;
Elling, CE ;
Schwartz, TW .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (49) :47662-47670
[13]   ENGINEERING HYBRID GENES WITHOUT THE USE OF RESTRICTION ENZYMES - GENE-SPLICING BY OVERLAP EXTENSION [J].
HORTON, RM ;
HUNT, HD ;
HO, SN ;
PULLEN, JK ;
PEASE, LR .
GENE, 1989, 77 (01) :61-68
[14]  
Kay AR, 2003, J NEUROSCI, V23, P6847
[15]   Activity-dependent presynaptic autoinhibition by group II metabotropic glutamate receptors at the perforant path inputs to the dentate gyrus and CA1 [J].
Kew, JNC ;
Ducarre, JM ;
Pflimlin, MC ;
Mutel, V ;
Kemp, JA .
NEUROPHARMACOLOGY, 2001, 40 (01) :20-27
[16]   Differential regulation of synaptic transmission by mGlu2 and mGlu3 at the perforant path inputs to the dentate gyrus and CA1 revealed in mGlu2-/-mice [J].
Kew, JNC ;
Pflimlin, MC ;
Kemp, JA ;
Mutel, VF .
NEUROPHARMACOLOGY, 2002, 43 (02) :292-292
[17]   Structural basis for a Ca2+-sensing function of the metabotropic glutamate receptors [J].
Kubo, Y ;
Miyashita, T ;
Murata, Y .
SCIENCE, 1998, 279 (5357) :1722-1725
[18]   Structural basis of glutamate recognition by a dimeric metabotropic glutamate receptor [J].
Kunishima, N ;
Shimada, Y ;
Tsuji, Y ;
Sato, T ;
Yamamoto, M ;
Kumasaka, T ;
Nakanishi, S ;
Jingami, H ;
Morikawa, K .
NATURE, 2000, 407 (6807) :971-977
[19]   Rapid translocation of Zn2+ from presynaptic terminals into postsynaptic hippocampal neurons after physiological stimulation [J].
Li, Y ;
Hough, CJ ;
Suh, SW ;
Sarvey, JM ;
Frederickson, CJ .
JOURNAL OF NEUROPHYSIOLOGY, 2001, 86 (05) :2597-2604
[20]   Lower serum zinc in major depression in relation to changes in serum acute phase proteins. [J].
Maes, M ;
De Vos, N ;
Demedts, P ;
Wauters, A ;
Neels, H .
JOURNAL OF AFFECTIVE DISORDERS, 1999, 56 (2-3) :189-194