| Literature DB >> 20804602 |
Kyoung Soo Kim1, Hyun-Mi Choi, Da Hee Oh, Chaekyun Kim, Jin Seok Jeong, Myung Chul Yoo, Hyung-In Yang.
Abstract
BACKGROUND: Adiponectin greatly stimulated the expression of matrix metalloproteinases (MMPs) in fibroblast-like synoviocytes (FLSs) as did IL-1beta. We wondered whether taurine chloramine (TauCl) inhibits the production of MMPs stimulated by adiponectin in the same pattern as by IL-1beta stimulation in vitroEntities:
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Year: 2010 PMID: 20804602 PMCID: PMC2994402 DOI: 10.1186/1423-0127-17-S1-S27
Source DB: PubMed Journal: J Biomed Sci ISSN: 1021-7770 Impact factor: 8.410
Sequences of PCR primers used in this study
| Primer name | Primer sequence | Product size |
|---|---|---|
| MMP-1 sense | 5′-CCT AGC TAC ACC TTC AGT GG-3′ | |
| MMP-1 antisense | 5′-GCC CAG TAC TTA TTC CCT TT-3′ | 338 bp |
| MMP-13 sense | 5′-TTG AGG ATA CAG GCA AGA CT-3′ | |
| MMP-13 antisense | 5′-TGG AAG TAT TAC CCC AAA TG-3′ | 311 bp |
| β-actin sense | 5′-TCA TGA GGT AGT CAG TCA GG-3′ | |
| β-actin antisense | 5′-CTT CTA CAA TGA GCT GCG TG-3′ | 305 bp |
Figure 1Effect of taurine chloramine on the expression of MMPs in adiponectin- or IL-β-stimulated FLSs. The expressions of the collagenases (MMP-1 and MMP-13) were determined by ELISA [A], and semi-quantitative RNA analysis [B]. Synovial cells (2.5 × 105 cells/60-mm dish/2-ml serum-free media) were treated with taurine chloramine (TauCl) for 30 min prior to 24 h of adiponectin (10 µg/ml) or IL-1β (10 ng/ml) stimulation for analysis of MMP proteins by ELISA. Supernatants were collected for ELISA and the cells were used for RNA extraction for semi-quantitative RT-PCR. Experiments were performed in quadruplicate with cells from patients. The experiments were repeated with FLSs from three patients. The data shown are representative of 3 independent experiments, and similar results were obtained from all 3. Values are expressed as mean ± S.E.M. *P<0.05, **P<0.01, and *** P<0.001 versus non-treated group.
Figure 2Effect of taurine chloramine on the signaling pathways stimulated by adiponectin. (A) Synovial cells (5 × 105 cells/60-mm dish/2-ml serum-free media) were treated with adiponectin (10 µg/ml). Time courses of the signaling pathways activated during adiponectin stimulation. (B) Synovial cells (5 × 105 cells/60-mm dish/2-ml serum-free media) were treated with TauCl 30 min prior to 30- or 45-min adiponectin (10 µg/ml) or IL-1β (10 ng/ml) stimulation, respectively. TauCl (600 µM) significantly inhibited the IκB-NF-κB signaling pathway by inhibiting the degradation of IκB-α induced by adiponectin, but not that by IL-1β. The data shown are representative of 3 independent experiments, and similar results were obtained from all 3.
Figure 3Effects of taurine chloramine on transnuclear migration of NF-κB. FLSs were seeded (5 × 106 cells) into 100-mm dishes and grown to 80% confluence. The cells were serum-starved overnight and stimulated by adiponectin (10 µg/ml) or IL-1β (10 ng/ml) for 120 min and 90 min, respectively, in the presence or absence of TauCl (600 µM). The nuclear levels of NF-κB were measured by ELISA detection of p65 in nuclear extracts. TauCl differentially inhibited the level of NF-κB in the nuclei of adiponectin- or IL-1β-stimulated RA FLSs. Values are expressed ± S.E.M. *p<0.05 versus adiponectin- or IL-1β-treated group in the presence of TauCl. ns, not significant.