| Literature DB >> 31920708 |
Yumin Xu1, Zhujun Cao1, Yezhou Ding1, Ziqiang Li1, Xiaogang Xiang1, Rongtao Lai1, Zike Sheng1, Yuhan Liu1, Wei Cai1, Ronggui Hu2, Hui Wang1, Qing Xie1.
Abstract
BACKGROUND: Long non-coding RNAs (lncRNAs) have recently been tightly linked to plenty of human diseases. However, knowledge of acute-on-chronic liver failure (ACLF) related lncRNAs remains insufficient. In this work, we studied the role of the lncRNA nuclear enriched abundant transcript 1 (NEAT1) in the pathogenesis of ACLF.Entities:
Keywords: LPS; NEAT1; STAT1; TRAF6; acute on liver failure; p38
Year: 2019 PMID: 31920708 PMCID: PMC6920254 DOI: 10.3389/fphys.2019.01503
Source DB: PubMed Journal: Front Physiol ISSN: 1664-042X Impact factor: 4.566
Clinical characteristics of the participants enrolled in the study.
| Case | 30 | 46 |
| Gender (M/F) | 18/12 | 36/10 |
| Age (years) | 46.5 ± 2.8 | 44.9 ± 2.4 |
| ALT level (U/L) | 26.8 ± 1.9 | 318.8 ± 57.4 |
| AST level (U/L) | 23.6 ± 0.7 | 273.1 ± 44.3 |
| TBiL level (μmol/L) | ND | 320 ± 26.5 |
| PTA (%) | ND | 31.2 ± 3.3 |
| Log [HBV DNA (IU/mL)] | ND | 4.7 ± 1.7 |
| HBsAg positive | 0 | 26 |
| HBeAg positive | 0 | 19 |
FIGURE 1The expression of NEAT1 is induced by LPS. (A) The expression of NEAT1 in HepG2 cells is evaluated by qPCR 6 h after LPS (1000 ng/ml) treatment. Bars indicates mean ± SEM of three experiments. Two-tailed unpaired t-test is performed. ∗∗ p < 0.01. (B) The kinetics of NEAT1 expression in response to different concentrations of LPS for 3, 6, 9, and 12 h in HepG2 cells. qPCR is used and bars indicates mean ± SEM from three experiments. (C) Western blotting analysis of JNK1/2, p38, and p65 3 h after LPS treatment.
FIGURE 2LPS induced NEAT1 expression is dependent on STAT1. (A) The knockdown efficiency for STAT1 siRNA. (B) Knockdown of STAT1 decreases NEAT1 expression upon LPS treatment in cultured HepG2 cells. (C) Overexpression of STAT1 in HepG2. (D) Overexpression of STAT1 increases NEAT1 expression in cultured HepG2 cells. Data is represented as mean ± SEM of three experiments. Two-tailed unpaired t-test is performed. Ns means none significant, and ∗∗ means p < 0.01.
FIGURE 3NEAT1 interacted with TRAF6 and repressed LPS induced inflammation response. (A) Western blot analysis of proteins bound to biotinylated NEAT1 in HepG2. (B) The recovery of NEAT1 is determined by immunoprecipitation with TRAF6 antibody in HepG2 cells. IgG served as negative control. Data is represented as mean ± SEM of three experiments. Two-tailed unpaired t-test is performed, and ∗∗ means p < 0.01 vs. IgG group. (C) Western blot analysis of the ubiquitination level of TRAF6 in HepG2. (D,E) qRT–PCR is used to study the effects of NEAT1 overexpression or NEAT1 knockdown on expression of IL-6 and IL-22 upon LPS stimulation in cultured HepG2. Two-tailed unpaired t-test is performed. ∗ means p < 0.05.
FIGURE 4NEAT1 correlates with IL-6 and IL-22 expression in ACLF patients. (A) qRT–PCR is used to study the expression of NEAT1 in PBMCs from healthy controls (n = 30) and ACLF patients (n = 46) ∗∗ means p < 0.01. (B,C) The correlation between NEAT1 and IL-22 (B) IL-6 (C) in PBMCs from healthy controls (n = 30) or ACLF patients (n = 46) is performed by non-parametric correlation analysis method. (D) The correlation between NEAT1 and CLIF-C ACLFs on 28 day. (E) Expression of NEAT1 in predicting 150-day mortality rate.
FIGURE 5NEAT1 attenuated liver damage in ACLF rat model. (A) Representative pathological section of the liver from the control group (n = 6), ACLF group (n = 6), and ACLF + NEAT1 treatment group (n = 6). The ACLF liver has plenty of lesions, whereas there are significant reduced lesions in the ACLF + NEAT1 group (B) Histopathological score. (C–E) The levels of HMGB1 (C), IL-1 (D), IL-22 (E) in serum of these rats were detected. The respective cytokines were detected using ELISA. (F,G) Liver damage assay of ALT and AST. (H) Percentage of CD45/CD11b+ cells. ∗ means p < 0.05 and ∗∗ means p < 0.01