| Literature DB >> 28790132 |
Xiao-Jing Yu1, Tie-Jun Song1, Lu-Wei Zhang1, Ying Su1, Ke-Yu Wang1, Qing Sun1.
Abstract
Psoriasis is a chronic skin disease characterized by abnormal keratinocyte proliferation and differentiation, inflammation, and angiogenesis. Overexpression of tribbles homolog3 (TRB3), which belongs to the tribbles family of pseudokinases, has been found in several human tumors and metabolic diseases, but its role in psoriasis has not been fully clarified. The aim of this study is to investigate the expression of TRB3 in psoriasis and explore its roles in the proliferation of keratinocytes. Twenty-four patients with psoriasis vulgaris were recruited for the study. Diagnosis of psoriasis was based on clinical and histologic examinations. Immunohistochemistry and real-time reverse transcription PCR (RT-PCR) were performed to determine protein and messenger RNA (mRNA) expression of TRB3 in psoriasis lesions. 5-Bromo-2-deoxyUridine (BrdU) incorporation assay were performed for cell proliferation. Cell cycle distribution was assessed by flow cytometry analysis. The levels of TRB3 is elevated in psoriatic lesions compared with psoriatic non-lesions. The HaCat cells expressed the TRB3 gene. We found TRB3 silencing to significantly inhibit HaCat cell proliferation. Furthermore, the specific knockdown of TRB3 slowed down the cell cycle at the gap 0/first gap phase. In conclusion, our data suggest that TRB3 is overexpressed in lesions of patients with psoriasis and may be involved in the abnormal proliferation of keratinocytes. Therefore, TRB3 may be a potential therapeutic target for psoriasis. © American Federation for Medical Research (unless otherwise stated in the text of the article) 2017. All rights reserved. No commercial use is permitted unless otherwise expressly granted.Entities:
Keywords: TRB3; keratinocytes; proliferation; psoriasis
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Year: 2017 PMID: 28790132 PMCID: PMC5847103 DOI: 10.1136/jim-2017-000453
Source DB: PubMed Journal: J Investig Med ISSN: 1081-5589 Impact factor: 2.895
Figure 1Tribbles homolog 3 (TRB3) mRNA expression in lesional skin compared with non-lesional skin by real time RT-PCR. Quantitative real-time RT–PCR on 24 paired clinical samples showed that the mean expression value of TRB3 mRNA in lesional regions (normalized by GAPDH gene expression) was significantly higher than the value in the corresponding normal regions.
Figure 2Representative immunohistochemical staining pattern for tribbles homolog 3 (TRB3) in lesional (A) and non-lesional (B) psoriasis skin. In the keratinocytes of psoriasis lesions, strong staining for TRB3 was observed in both nucleus and cytoplasm. Bar=50 µm (original magnification ×20).
Figure 3Proliferation assay with siRNA inhibition in HaCat cell lines. Proliferation assay was performed in HaCat cells. There were significant differences between WT or NC, and TRB3 siRNA. Values are presented as means±SD of three independent experiments. NC, negative control; TRB3, tribbles homolog 3; WT, wild type.
Figure 4Effect of tribbles homolog 3 (TRB3) expression on cell cycle progression in HaCat cells. Cell cycle distribution was performed by flow cytometry analysis. Knockdown of TRB3 by RNAi in HaCat cells induced cell cycle arrest in the G0/G1 phase 2 days after transfection. Quantitative assessment of the percentage of cellular population associated with each phase of the cell cycle is illustrated between TRB3 siRNA and wild type (WT). Data represent the mean±SD of three independent experiments.