Integrated Analysis of Transcriptome and microRNA Profile Reveals the Toxicity of Euphorbia Factors toward Human Colon Adenocarcinoma Cell Line Caco-2.
Lingyue ZouWenqiang BaoYadong GaoMengting ChenYajiao WuShuo WangChutao LiJian ZhangDongcheng ZhangQi WangAn ZhuPublished in: Molecules (Basel, Switzerland) (2022)
Euphorbia factors, lathyrane-type diterpenoids isolated from the medical herb Euphorbia lathyris L. ( Euphorbiaceae ), have been associated with intestinal irritation toxicity, but the mechanisms underlying this phenomenon are still unknown. The objective of this study was to evaluate the transcriptome and miRNA profiles of human colon adenocarcinoma Caco-2 cells in response to Euphorbia factors L1 (EFL1) and EFL2. Whole transcriptomes of mRNA and microRNA (miRNA) were obtained using second generation high-throughput sequencing technology in response to 200 μM EFL treatment for 72 h, and the differentially expressed genes and metabolism pathway were enriched. Gene structure changes were analyzed by comparing them with reference genome sequences. After 72 h of treatment, 16 miRNAs and 154 mRNAs were differently expressed between the EFL1 group and the control group, and 47 miRNAs and 1101 mRNAs were differentially expressed between the EFL2 group and the control. Using clusters of orthologous protein enrichment, the sequenced mRNAs were shown to be mainly involved in transcription, post-translational modification, protein turnover, chaperones, signal transduction mechanisms, intracellular trafficking, secretion, vesicular transport, and the cytoskeleton. The differentially expressed mRNA functions and pathways were enriched in transmembrane transport, T cell extravasation, the IL-17 signaling pathway, apoptosis, and the cell cycle. The differentially expressed miRNA EFLs caused changes in the structure of the gene, including alternative splicing, insertion and deletion, and single nucleotide polymorphisms. This study reveals the underlying mechanism responsible for the toxicity of EFLs in intestinal cells based on transcriptome and miRNA profiles of gene expression and structure.
Keyphrases
- genome wide
- gene expression
- cell cycle arrest
- induced apoptosis
- cell cycle
- oxidative stress
- signaling pathway
- endothelial cells
- single cell
- dna methylation
- rna seq
- pi k akt
- squamous cell carcinoma
- endoplasmic reticulum stress
- cell death
- genome wide analysis
- cell proliferation
- binding protein
- copy number
- high throughput sequencing
- pluripotent stem cells
- epithelial mesenchymal transition
- locally advanced
- induced pluripotent stem cells
- radiation therapy
- transcription factor
- body composition
- rectal cancer
- bone mineral density
- small molecule
- amino acid