TdIF1-LSD1 Axis Regulates Epithelial-Mesenchymal Transition and Metastasis via Histone Demethylation of E-Cadherin Promoter in Lung Cancer.
Qi LiuJuan XiongDerong XuNan HaoYujuan ZhangYi SangZhigang WangXiufen ZhengJeffrey MinHong DiaoJacques RaphaelSaman Maleki VarekiJames KoropatnickWeiping MinPublished in: International journal of molecular sciences (2021)
We have previously found that TdT-interacting factor 1 (TdIF1) is a potential oncogene expressed in non-small cell lung cancer (NSCLC) and is associated with poor prognosis. However, its exact mechanism is still unclear. The lysine-specific demethylase 1 (LSD1) is a crucial mediator of the epithelial-mesenchymal transition (EMT), an important process triggered during cancer metastasis. Here, we confirm that TdIF1 is highly expressed in NSCLC and related to lymph node metastasis through The Cancer Genome Atlas (TCGA) analysis of clinical samples. Silencing TdIF1 can regulate the expression of EMT-related factors and impair the migration and invasion ability of cancer cells in vitro. An analysis of tumor xenografts in nude mice confirmed that silencing TdIF1 inhibits tumor growth. Furthermore, we determined the interaction between TdIF1 and LSD1 using immunoprecipitation. Chromatin immunoprecipitation (ChIP) revealed that TdIF1 was enriched in the E-cadherin promoter region. The knockdown of TdIF1 repressed the enrichment of LSD1 at the E-cadherin promoter region, thereby regulating the level of promoter histone methylation and modulating E-cadherin transcription activity, ultimately leading to changes in EMT factors and cancer cell migration and invasion ability. The LSD1 inhibitor and TdIF1 knockdown combination showed a synergistic effect in inhibiting the growth, migration, and invasion of NSCLC cells. Taken together, this is the first demonstration that TdIF1 regulates E-cadherin transcription by recruiting LSD1 to the promoter region, thereby promoting EMT and tumor metastasis and highlighting the potential of TdIF1 as a therapeutic target for NSCLC.
Keyphrases
- epithelial mesenchymal transition
- dna methylation
- poor prognosis
- transcription factor
- papillary thyroid
- lymph node metastasis
- signaling pathway
- small cell lung cancer
- genome wide
- gene expression
- transforming growth factor
- advanced non small cell lung cancer
- long non coding rna
- induced apoptosis
- squamous cell carcinoma
- brain metastases
- squamous cell
- single cell
- dna damage
- pi k akt
- high throughput
- metabolic syndrome
- skeletal muscle
- cell proliferation
- childhood cancer
- climate change
- amino acid
- young adults
- circulating tumor cells
- binding protein
- density functional theory
- high throughput sequencing
- insulin resistance