| Literature DB >> 29191214 |
Ning-Sheng Lai1,2, Hui-Chun Yu1, Chien-Hsueh Tung1, Kuang-Yung Huang1,2, Hsien-Bin Huang3, Ming-Chi Lu4,5.
Abstract
BACKGROUND: Tumor necrosis factor-alpha (TNF-α) can cause diverse T cell dysfunctions in patients with rheumatoid arthritis (RA). It is involved in the regulation of microRNAs (miRNAs) expression in different cell types. We hypothesized that the expression of T cell miRNAs would be affected by TNF-α, and these miRNAs could participate in the immunopathogenesis of RA.Entities:
Keywords: Apoptosis; ERK; JNK; Rheumatoid arthritis; T cells; TNF-α; microRNAs
Mesh:
Substances:
Year: 2017 PMID: 29191214 PMCID: PMC5709919 DOI: 10.1186/s13075-017-1465-z
Source DB: PubMed Journal: Arthritis Res Ther ISSN: 1478-6354 Impact factor: 5.156
Associations between miRNAs expression levels in T cells and clinical parameters in rheumatoid arthritis patients
| miRNA | Age (per 10 years | Sex (male/female) | CRP (mg/dL) | ACPAs (per 10 IU/mL) | Positivity of RF (yes/no) | Sulfalsalazine usage (yes/no) | MTX dosage (mg/week) | Leflunomide usage (yes/no) | Steroid dosage equivalent to perdnisolone (mg/day) | Biologic agenta usage (yes/no) |
|---|---|---|---|---|---|---|---|---|---|---|
| miR-139-3p | 0.07 (0.816) | –0.35 (0.732) | –0.26 (0.460) | -0.03 (0.373) |
| –0.50 (0.683) | 0.06 (0.581) | 0.51 (0.508) | 0.50 (0.054) |
|
| miR-204 | 0.15 (0.615) | –1.36 (0.128) | –0.33 (0.285) | -0.04 (0.152) | –0.63 (0.385) | –1.27 (0.233) | –0.06 (0.484) | 0.26 (0.700) | 0.09 (0.707) |
|
| miR-214 | –0.26 (0.344) | –0.05 (0.949) |
| -0.01 (0.515) | –0.96 (0.158) | –1.56 (0.116) | –0.10 (0.287) | 1.02 (0.107) | 0.03 (0.900) |
|
| miR-383 | –0.03 (0.891) | –0.82 (0.309) | 0.11 (0.687) | 0.02 (0.497) | –0.12 (0.854) |
|
| –0.26 (0.672) |
| 0.41 (0.507) |
| miR-524-5p | –0.39 (0.307) | –0.93 (0.435) | –0.41 (0.313) | 0.00 (0.921) | –1.07 (0.266) | –1.32 (0.353) | –0.07 (0.568) | 0.69 (0.447) | 0.09 (0.775) | 0.63 (0.488) |
| miR-548d-3p | –0.19 (0.494) | –0.14 (0.870) | –0.45 (0.123) | 0.05 (0.051) | 0.14 (0.845) | –1.66 (0.098) | –0.01 (0.880) | –0.43 (0.505) | 0.02 (0.926) | 0.42 (0.524) |
| miR-760 | –0.40 (0.253) | 0.29 (0.795) | –0.23 (0.553) | -0.01 (0.780) | –1.08 (0.226) | –1.56 (0.234) | –0.08 (0.485) |
| 0.51 (0.074) |
|
| miR-877 | –0.48 (0.235) | –0.27 (0.833) | –0.04 (0.922) | -0.02 (0.554) | 0.05 (0.965) | –0.32 (0.830) | –0.08 (0.563) | 1.28 (0.175) | 0.36 (0.266) | 1.30 (0.174) |
Values shown are correlation coefficients and (p values) from simple linear regression, and those in bold represent p < 0.05
ACPAs anti-citrullinated protein antibodies, CRP C-reactive protein, miRNA microRNAs, MTX methotrexate, RF rheumatoid factor
aBiologic agent including: tumor necrosis factor antagonists, abatacept, and tocilizumab
Values shown are correlation coefficients and (p values) from simple linear regression, and those in bold represent p < 0.05
Adjusted associations between miRNAs expression levels in T cells and parameters in rheumatoid arthritis patients
| miRNA | Age (per 10 years | Sex (male/female) | CRP (mg/dL) | ACPAs (per 10 IU/mL) | Positivity of RF (yes/no) | Sulfasalazine usage (yes/no) | MTX dosage (mg/week) | Leflunomide usage (yes/no) | Steroid dosage equivalent to perdnisolone (mg/day) | Biologic agenta usage (yes/no) |
|---|---|---|---|---|---|---|---|---|---|---|
| miR-139-3p | 1.03 (0.68–1.56) | 0.78 (0.21–2.84) | – | – |
| – | – | – | 1.37 (0.98–1.92) |
|
| miR-204 | 0.83 (0.59–1.16) |
| – | – | – | – | – | – | – |
|
| miR-214 | 0.88 (0.62–1.24) | 0.60 (0.20–1.80) |
| – | – | – | – | – | – |
|
| miR-383 | 1.08 (0.77–1.52) | 0.71 (0.24–2.09) | – | – | – | 0.33 (0.08–1.36) | 0.93 (0.82–1.05) | – | 0.81 (0.60–1.10) | – |
| miR-548d-3p | 0.80 (0.52–1.22) | 0.55 (0.14–2.16) | – | 0.62 (0.13–2.96) | – | – | – | – | – | – |
| miR-760 | 0.72 (0.46–1.11) | 0.97 (0.25–3.81) | – | – | – | – | – | 2.54 (0.94–6.90) | 1.35 (0.95–1.93) |
|
Values shown are fold change (95% confidence interval) calculated using multiple linear regression analysis, and those in bold represent p < 0.05
ACPAs anti-citrullinated protein antibodies, CRP C-reactive protein, miRNA microRNAs, MTX methotrexate, RF rheumatoid factor
aBiologic agent including: tumor necrosis factor antagonists, abatacept, and tocilizumab
Fig. 1Altered expression of T cell miRNAs affected by TNF-α in patients with RA and healthy controls. a Expression profiles of 270 miRNAs in Jurkat cells cultured in the presence or absence of TNF-α (20 ng/mL) for 7 days, as determined by real-time PCR. Each scatter spot representing average normalized expression level of miRNA in three repeats of each treatment; (b) 13 miRNAs exhibiting aberrant expression in Jurkat cells cultured with TNF-α (20 ng/mL) for 7 days; (c) decreased expression of miR-139-3p, miR-204, miR-760, miR-524-5p, miR-136, miR-548d-3p, miR-214, miR-383, and miR-887 in RA T cells miRNA, compared with normal T cells. The relative expression level of miRNA was defined as (39 – Ct) after adjusting with an internal control (U6 small nuclear RNA)
Fig. 2Effects of miR-214 mimic transfection in Jurkat cells apoptosis. a Remarkable elevation of miR-214 expression levels in Jurkat cells after transfection with miR-214 mimic versus controls (transfected with scramble oligonucleotides); (b) increased Jurkat cells apoptosis after cultured with TNF-α (20 ng/mL) for 7 days, compared with culture medium alone; (c) in Jurkat cells transfected scrambled oligonucleotides, the apoptotic rate of Jurkat cells was increased after cultured with TNF-α (20 ng/mL) for 24 h compared with those cultured with medium alone. The apoptotic rate was similar in Jurkat cells transfected with miR-214 mimic cultured either in the presence or absence of TNF-α (Fig. 2c)
Fig. 3Effects of miR-214 inhibitor (miR-214i) transfection in Jurkat cells apoptosis. a Decreased miR-214 expression in Jurkat cells after transfection with miR-214 inhibitor versus scramble oligonucleotides; (b) in Jurkat cells transfected miR-214 inhibitor or controls, the apoptotic rate was increased after cultured with TNF-α (20 ng/mL) for 24 h compared with those cultured with medium alone. Whether cultured with TNF-α or not, the apoptotic rate of Jurkat cells was not different between those transfected with miR-214 inhibitors and the controls
Fig. 4Comparison of ERK and JNK protein phosphorylation in T-cell lysates from RA and control groups as detected by Western blot analysis. Increased (a) ERK and (b) JNK phosphorylation in nine patients with RA and six healthy controls, normalized to actin expression; (c) ERK and JNK protein phosphorylation in T cell lysates of three patients with RA and two healthy controls as representative tests
Fig. 5Effect of miR-214 on ERK and JNK protein phosphorylation in Jurkat cells. a The phosphorylation ratio of ERK and JNK increased in Jurkat cells after being cultured with TNF-α (20 ng/mL) for 48 h compared with those cultured with medium (CM) alone and (b) a representative case. c In Jurkat cells after transfection with miR-214 mimic or scramble oligonucleotides cultured with medium alone for 48 h, the phosphorylation ratio of ERK and JNK decreased in those transfected with miR-214 mimic compared with the control groups and (d) a representative case. e In Jurkat cells after transfection with miR-214 mimic or scramble oligonucleotides cultured with TNF-α (20 ng/mL) for 48 h, the phosphorylation ratio of ERK and JNK decreased in those transfected with miR-214 mimic compared with the control groups and (f) a representative case