Targeting hexokinase 2 increases the sensitivity of oxaliplatin by Twist1 in colorectal cancer.
Bo ZhangSze-Hoi ChanXue-Qi LiuYuan-Yuan ShiZhao-Xia DongXin-Rong ShaoLi-Yuan ZhengZhi-Ying MaiTian-Liang FangLi-Zhi DengDi-Sheng ZhouShu-Na ChenMiao LiXing-Ding ZhangPublished in: Journal of cellular and molecular medicine (2021)
Colorectal cancer (CRC) is the third most malignant tumour worldwide, with high mortality and recurrence. Chemoresistance is one of the main factors leading to metastasis and poor prognosis in advanced CRC patients. By analysing the Gene Expression Omnibus data set, we found higher hexokinase 2 (HK2) expression levels in patients with metastatic CRC than in those with primary CRC. Moreover, we observed higher enrichment in oxaliplatin resistance-related gene sets in metastatic CRC than in primary CRC. However, the underlying relationship has not yet been elucidated. In our study, HK2 expression was significantly elevated in CRC patients. Gene set enrichment analysis (GSEA) revealed multi-drug resistance and epithelial-mesenchymal transition (EMT) pathways related to high HK2 expression. Our results showed that knockdown of HK2 significantly inhibited vimentin and Twist1 expression and promoted TJP1 and E-cadherin expression in CRC cells. Additionally, transcriptional and enzymatic inhibition of HK2 by 3-bromopyruvate (3-bp) impaired oxaliplatin resistance in vitro and in vivo. Mechanistically, HK2 interacts with and stabilized Twist1 by preventing its ubiquitin-mediated degradation, which is related to oxaliplatin resistance, in CRC cells. Overexpression of Twist1 reduced the apoptosis rate by HK2 knockdown in CRC cells. Collectively, we discovered that HK2 is a crucial regulator that mediates oxaliplatin resistance through Twist1. These findings identify HK2 and Twist1 as promising drug targets for CRC chemoresistance.
Keyphrases
- poor prognosis
- epithelial mesenchymal transition
- high glucose
- long non coding rna
- cell cycle arrest
- gene expression
- induced apoptosis
- end stage renal disease
- transforming growth factor
- signaling pathway
- binding protein
- ejection fraction
- chronic kidney disease
- oxidative stress
- cell death
- pi k akt
- endothelial cells
- transcription factor
- squamous cell carcinoma
- genome wide
- peritoneal dialysis
- type diabetes
- prognostic factors
- nitric oxide
- risk factors
- dna methylation
- cell proliferation
- emergency department
- cancer therapy
- machine learning
- adverse drug