| Literature DB >> 35063035 |
Ting Wang1, Chaopeng Li1, Min Shi2, Shi Zhou1, Jiajing Chen1, Fang Wang3.
Abstract
BACKGROUND: Diabetic retinopathy (DR) is a serious complication of diabetes. Numerous reports have validated that circular RNAs (circRNAs) participate in DR progression. This study aimed to elucidate the role and potential mechanism of circRNA zinc finger protein 532 (circZNF532) in DR.Entities:
Keywords: CARM1; Diabetic retinopathy; High glucose; circZNF532; miR-1243
Year: 2022 PMID: 35063035 PMCID: PMC8780307 DOI: 10.1186/s13098-022-00787-z
Source DB: PubMed Journal: Diabetol Metab Syndr ISSN: 1758-5996 Impact factor: 3.320
Comparison of clinical data between DR and Control groups
| Characteristics | Control (n = 23) | DR(n = 23) | P value |
|---|---|---|---|
| Gender (Male/female) | 15/8 | 16/7 | 0.55 |
| Age (years) | 51.52 ± 6.2 | 50.38 ± 5.8 | 0.62 |
| BMI (kg/m2) | 28.3 ± 3.6 | 25.9 ± 5.2 | 0.01* |
| Smoking history | 0.09 | ||
| No | 18 | 16 | |
| Yes | 5 | 7 | |
| HbA1c (%) | 3.86 ± 0.41 | 8.96 ± 2.33 | 0.04* |
| Family history of DM | 0.42 | ||
| No | 15 | 16 | |
| Yes | 8 | 7 | |
| BP systolic, mm Hg | 103.5 ± 6.98 | 118.4 ± 14.21 | 0.03* |
| BP diastolic, mm Hg | 63.2 ± 8.99 | 75.23 ± 10.15 | 0.02* |
| TG (mmol/L) | 1.38 ± 0.21 | 1.53 ± 0.18 | 0.63 |
| TC (mmol/L) | 4.02 ± 0.47 | 4.36 ± 0.48 | 0.06 |
| HDL (mg/dL) | 58.31 ± 11.96 | 50.12 ± 12.31 | 0.03* |
| LDL (mg/dL) | 126.25 ± 21.21 | 136.33 ± 12.89 | 0.06 |
| Urinary creatinine, mmol/L | 9.62 ± 5.11 | 11.32 ± 4.52 | 0.46 |
| FPG (mmol/L) | 5.03 ± 0.85 | 7.62 ± 0.38 | 0.02* |
| FINS (mIU/I) | 5.36 ± 0.68 | 5.52 ± 0.77 | 0.51 |
BMI, body mass index; HbA1c, haemoglobin A1c; DM, diabetes mellitus; DR, diabetic retinopathy; BP, blood pressure; TG, triacylglycerol; TC, total cholesterol; HDL, high-density lipoprotein; LDL, low density lipoprotein; FPG, fasting plasma glucose; FINS, fasting insulin
*P < 0.05
Fig. 1Expression of circZNF532 in DR patients and high glucose-treated hRMECs. A The expression of circZNF532 in serum from DR patients (n = 23) and healthy controls (n = 23) was detected using qRT-PCR. B hRMECs were exposed to 5.5 mM glucose (normal glucose, NG) or 25 mM glucose (high glucose, HG) for different times, and circZNF532 level was measured using qRT-PCR. C The levels of circZNF532 and linear ZNF532 were examined by qRT-PCR after RNase R treatment. *P < 0.05
Fig. 2Depletion of circZNF532 alleviated proliferation, migration, invasion, tube formation and pro-inflammatory cytokine release induced by HG in hRMECs. After si-circZNF532 or si-NC transfection, hRMECs were treated with NG or HG for 48 h. A The expression of circZNF532 was examined by qRT-PCR. B Cell proliferation was tested by colony formation assay. C and D Cell migration and invasion were assessed by transwell assay. E Tube formation assay was utilized to evaluate angiogenesis. F–H The levels of pro-inflammatory cytokines (IL-1β, IL-6 and TNF-α) were measured using ELISA assay. *P < 0.05
Fig. 3circZNF532 served as a molecular sponge for miR-1243. A The predicted binding site between circZNF532 and miR-1243 was displayed by circinteractome. B The overexpression and knockdown efficiencies of miR-1243 were determined using qRT-PCR. C and D The binding relationship between circZNF532 and miR-1243 was validated by dual-luciferase reporter and RIP assays. E The level of miR-1243 in serum from DR patients (n = 23) and healthy controls (n = 23) was examined by qRT-PCR. F The expression of miR-1243 was detected by qRT-PCR in hRMECs stimulated with NG or HG for different times. G The level of miR-1243 was measured using qRT-PCR in hRMECs transfected with si-circZNF532 or si-NC. *P < 0.05
Fig. 4circZNF532 indirectly regulated CARM1 by binding to miR-1243. A The putative binding site of miR-1243 on CARM1 3′UTR was exhibited. B The interaction between miR-1243 and CARM1 was determined by dual-luciferase reporter assay. C and D CARM1 mRNA and protein levels in serum from DR patients (n = 23) and healthy controls (n = 23) were examined by qRT-PCR and western blot. E CARM1 protein expression was measured by western blot in hRMECs treated with NG or HG for different times. F CARM1 protein level was examined by western blot in hRMECs transfected with miR-NC or miR-1243. G hRMECs were introduced with si-NC, si-circZNF532, si-circZNF532 + in-miR-NC or si-circZNF532 + in-miR-1243, and CARM1 protein level was detected using western blot. *P < 0.05
Fig. 5Molecular mechanism of circZNF532/miR-1243/CARM1 axis in DR. The flow chart displayed the mechanism by which circZNF532 regulated DR progression through miR-1243/CARM1 axis