| Literature DB >> 28056970 |
Xiaochen Yan1,2,3,4, Bo Pan1,2,3,4, Tiewei Lv1, Lingjuan Liu1, Jing Zhu2, Wen Shen5, Xupei Huang6, Jie Tian7.
Abstract
BACKGROUND: Prenatal alcohol exposure may cause cardiac development defects, however, the underlying mechanisms are not yet clear. In the present study we have investigated the roles of histone modification by curcumin on alcohol induced fetal cardiac abnormalities during the development. METHODS ANDEntities:
Keywords: Alcohol; Apoptosis; Caspase; Fetal cardiac development; Histone acetylation
Mesh:
Substances:
Year: 2017 PMID: 28056970 PMCID: PMC5217636 DOI: 10.1186/s12929-016-0310-z
Source DB: PubMed Journal: J Biomed Sci ISSN: 1021-7770 Impact factor: 8.410
The primers used in Q-PCR or CHIP assays
| Q-PCR Primer | Produce size | ||
| Caspase-3 | Forward | 5'-TGACTGGAAAGCCGAAACTC-3' | 101 bp |
| Reverse | 5'-GCAAGCCATCTCCTCATCA-3' | ||
| Caspase-8 | Forward | 5'-GCCCTCAAGTTCCTGTGCT-3' | 115 bp |
| Reverse | 5'-GATTGCCTTCCTCCAACATC-3' | ||
| Bcl-2 | Forward | 5'-CGACTTCTTCAGCATCAGGA-3' | 130 bp |
| Reverse | 5'-TGAGCCACAGGGAGGTTCT-3' | ||
| β-actin | Forward | 5'-GGAGATTACTGCCCTGGCTCCTA-3' | 174 bp |
| Reverse | 5'-GACTCATCGTACTCCTGCTTGCTG-3' | ||
| CHIP Primer | |||
| Caspase-3 | Forward | 5'-AGTCCCTTACATCCAACG-3' | 113 bp |
| Reverse | 5'-AGCACAGCGATCAGCATC-3' | ||
| Caspase-8 | Forward | 5'-CAGAGGGATCAGGTTGGG-3' | 102 bp |
| Reverse | 5'-AGGAGTCATAGCAAGGGT-3' | ||
| Bcl-2 | Forward | 5'-TGTGGTTGCTGACACTTGAAC-3' | 83 bp |
| Reverse | 5'-ACTCGTGGTTGGTGAGATGG-3' |
The antibodies used in Western blotting assays
| Primary antibody | Dilution | Secondary antibody | |
|---|---|---|---|
| H3acK9 | Abcam | 1:500 | anti-rabbit |
| Caspase-3 | CST | 1:1000 | anti-rabbit |
| Cleaved caspase-3 | Arigo | 1:500 | anti-mouse |
| Caspase-8 | CST | 1:1000 | anti-rabbit |
| Cleaved caspase-8 | CST | 1:1000 | anti-rabbit |
| Bcl-2 | Santa Cruz Biotechnology | 1:500 | anti-mouse |
| β-actin | Abcam | 1:2000 | anti-mouse |
Fig. 1Effect of Alcohol Exposure on H3K9 Acetylation of Fetal Hearts in E17.5. a Western blot bands. b Prenatal alcohol exposure increased the acetylation of histone H3K9. *p < 0.05
Fig. 2Effect of Alcohol Exposure on the Expression of Apoptosis Gene of Embryonic Hearts in E17.5. a, b The mRNA levels of caspase-3 and caspase-8 increased more with alcohol exposure, compared with the control group. c The mRNA levels of bcl-2 decreased more in the alcohol group than in the control group. d, e, f Western blot band. g, h Western blotting showed that prenatal alcohol exposure increased the expression of cleaved caspase-3 and decreased the expression of caspase-3. i, j Western blotting showed that pregnant alcohol exposure increased the expression of cleaved caspase-8 and decreased the expression of caspase-8. k Western blotting showed that bcl-2 significantly decreased in alcohol group than in control group. *p < 0.05
Fig. 3Effect of Alcohol Exposure on Myocardial Apoptosis. TUNEL assay results showed that alcohol exposure increased the apoptosis cells in the fetal heart. a Control group. b Alcohol group. TUNEL-positive cells are shown in brown (arrow)
Fig. 4Effect of Alcohol Exposure on Acetylation of Histone H3K9 near the Promoter Regions of Apoptosis Genes. a, b ChIP-Q-PCR data showed that alcohol increased the acetylation of histone H3K9 near the promoter regions of caspase-3 and caspase-8. c ChIP-Q-PCR data showed that alcohol decreased the acetylation of histone H3K9 near the promoter region of bcl-2. *p < 0.05
Fig. 5Effect of Curcumin on Acetylation of Histone H3K9 in Cardiac Progenitor Cells Treated by Alcohol. a Western blot bands. b Alcohol treatment lead to the hyper-acetylation of histone H3K9 in cardiac progenitor cells, and curcumin pretreatment could prevent this change. *p < 0.05
Fig. 6Effect of Curcumin on Expression Levels of Apoptosis Genes in Cardiac Progenitor Cells Treated with Alcohol. a, b, c Western blot band. d, e Western blotting showed that alcohol treatment increased the expression of cleaved caspase-3 and decreased the expression of caspase-3, and curcumin pretreatment could reverse this change. f, g Western blotting showed that alcohol treatment increased the expression of cleaved caspase-8 and decreased the expression of caspase-8, and curcumin pretreatment could reverse this change. h Alcohol treatment could decrease the expression of bcl-2 in cardiac progenitor cells, while curcumin pretreatment could prevent this change. *p < 0.05
Fig. 7Effect of Curcumin on Apoptosis Levels in Cardiac Progenitor Cells Treated by Alcohol. Flow cytometry (FCM) assay was used to detect the apoptosis levels. a Control group. b Alcohol group. c Curcumin group. d Alcohol + Curcumin group. e DMSO group. f Quantitative analysis (percentage of apoptosis cells versus total cells) of five group showed that alcohol treatment increased the apoptosis rate and curcumin pretreatment could correct this change