| Literature DB >> 26070068 |
Ayaka Tobo1, Masayuki Tobo1, Takashi Nakakura1, Masashi Ebara1, Hideaki Tomura1, Chihiro Mogi1, Dong-Soon Im2, Naoya Murata1, Atsushi Kuwabara1, Saki Ito3, Hayato Fukuda3, Mitsuhiro Arisawa3, Satoshi Shuto4, Michio Nakaya5, Hitoshi Kurose5, Koichi Sato1, Fumikazu Okajima1.
Abstract
G protein-coupled receptor 4 (Entities:
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Year: 2015 PMID: 26070068 PMCID: PMC4466532 DOI: 10.1371/journal.pone.0129334
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Fig 1Chemical structure of imidazopyridine compounds, psychosine, and N-acetyl-psychosine.
Chemical structures of imidazopyridine compounds, i.e., compound 1, 2, and 3, and psychosine (or galactosyl (Gal) sphingosine) and N-acetyl-psychosine are shown.
Fig 2Specific inhibition of GPR4-mediated SRE promoter activity by imidazopyridine compounds.
HEK293 cells were transiently transfected with GPR4 (A and B), OGR1 (C), TDAG8 (D), or G2A (E) plasmid, together with pRL-TK and pSRE-luc. The cells expressing the respective receptor and luciferase genes were then incubated for 6 h at the indicated pH to measure SRE promoter activity in the presence or absence of test compounds. The concentration of test compounds was as follows; 0.1 to 10 μM for compound 1 (C1) and 10 μM for compound 2 (C2) and compound 3 (C3) in (A), the indicated concentration in (B), and 10 μM for all the test compounds in (C to E). SRE activity was estimated as the ratio of firefly (pSRE-luc) and Renilla (pRL-TK) luciferase activities and the results are shown as percentages of the maximal activity (ratio) obtained at optimum pH for each receptor in (A and C-E): the maximal activity was 12.1 ± 3.8 for GPR4 at pH 6.8 in (A), 21.4 ± 7.1 for OGR1 at pH 6.4 in (C), 36.4 ± 0.4 for TDAG8 at pH 6.6 in (D), and 18.6 ± 6.7 for G2A at pH 6.4 in (E). In (B), the activity was expressed as percentages of the value obtained at pH 7.0. Results are means ± SEM of 4 to 6 determinations from two to three separate experiments. In (A), effect of each test compound is significantly different from control (*p < 0.05), while effects of all the test compounds at pH 7.2, 7.0, and 6.8 are significantly different from control (#p < 0.05). In (B), effect of C2 or C3 is significantly different from that of C1 (¶p < 0.05). In (C to E), effect of each test compound is significantly different from control (*p < 0.05).
Fig 3Compound 1 specifically inhibits GPR4-mediated responses.
GPR4-expressing CHO cells (A), GPR4-expressing COS7 cells (B), or TDAG8-expressing COS7 cells (C) were incubated for 30 min to measure cAMP accumulation under the indicated pH with or without 1 μM compound 1 (C1) and/or 1 μM forskolin (Fors). Results are expressed as means ± SD of three determinations of the representative experiment in (A) and expressed as means ± SEM of five determinations of three separate experiments in (B and C). The effect of compound 1 was significant (*p < 0.05). HUVECs infected with GPR4 adenovirus were incubated for 6 h in the presence of the indicated concentrations of compound 1 in (D and E) or in the presence of absence of 1 μM compound 1 in (F and G) at the indicated pH to measure mRNAs for VCAM-1 (D), ICAM-1 (E), CXCL2 (F), and IL-8 (G). The mRNA expression normalized to GAPDH was expressed as percentages of the value in the absence of compound 1 at pH 6.8. These values at pH 6.8 were 22.7 ± 6.6 for VCAM1 mRNA, 15.1 ± 4.1 for ICAM1 mRNA, 226 ± 20 for CXCL2 mRNA, 12.9 ± 0.9 for IL-8 mRNA (normalized to GAPDH x 103). The results are means ± SEM of three to five separate experiments. The effect of compound 1 was significant (*p < 0.05). (H) AoSMCs harvested from 10-cm dish were prelabeled with fura-2/AM. The cells were first incubated with compound 1 (1 μM) and then further incubated under indicated pH with or without LPA (1 μM) and SPC (20 μM) to monitor [Ca2+]i. The net [Ca2+]i change (peak value-basal value) at around 15 s was calculated. Data are means ± SEM from three separate experiments.
Fig 4Internalization of GPR4 in response to acidification and its inhibition by compound 1.
Permanent cell line expressing GFP-conjugated GPR4 or V1a vasopressin receptor was incubated for 1 h with or without 1 μM [Arg8]-vasopressin (AVP) or 1 μM compound 1 (C1) under the indicated pH to monitor of receptor internalization. After fixation, nucleus was stained with DAPI (blue) and localization of GFP-receptor (green) was monitored. Scale bar: 20 μm. The results are representative of three to four separate experiments. The higher magnification image of the small square is shown in the large square.
Fig 5Different action modes of psychosine from compound 1.
HEK293 cells were transiently transfected with plasmid of GPR4 (A and D), OGR1 (B), TDAG8 (C), or H165F/H269F double mutant of GPR4 (GPR4-mutant; E and F), together with pRL-TK and pSRE-luc. The cells expressing the respective receptor and luciferase genes were then incubated for 6 h at the indicated pH to measure SRE promoter activity in the presence or absence of psychosine (Psy; 10 μM), N-acetyl-psychosine (NAc-Psy; 10 μM), or compound 1 (C1; 100 nM). SRE activity was estimated as the ratio of firefly (pSRE-luc) and Renilla (pRL-TK) luciferase activities and the results are shown as percentages of the maximal activity (ratio) obtained at optimum pH for each receptor in (A-D), as shown in Fig 2. In GPR4 mutant experiments (E and F), the activity was expressed as percentages of the value obtained at pH 6.8 in wild-type GPR4 (A). Results are means ± SEM of 4 to 6 determinations from two to three separate experiments. The effect of each test compound was significantly different from control (*p < 0.05).
Fig 6GPR4 signaling pathways and action modes of the imidazopyridine compound and psychosine as the GPR4 modulator and antagonist.
Extracellular protons induce GPR4 activation through histidine residues and subsequent activation of G protein/effector systems, i.e., Gs/cAMP system and G13/Rho system, resulting in the mRNA expression of adhesion molecules and SRE transcriptional activation, respectively. Similarly to other GPCRs, GPR4 is desensitized by its internalization in response to extracellular acidification. Both imidazopyridine compound and psychosine inhibit the proton/GPR4 function but by different action modes with respect to the histidine susceptibility. See text more detail.