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YTHDF2 promotes gastric cancer progression and enhances chemoradiotherapy resistance
Jian Yang1,2, Yawen Chen3, Yang He3
1The First Clinical Medical College, Lanzhou University, Lanzhou, China.
Abstract:
The role of YTHDF2 in gastric cancer (GC) is controversial. Due to the limitations of technical difficulty and experimental period, research on completely knocking out YTHDF2 is rare. Therefore, further investigations are still needed to clarify the YTHDF2's clinical significance and biological function in GC. To carry out the investigation, an analysis was performed on the expression levels of YTHDF2 in both publicly available databases and samples obtained from patients with gastric cancer. Based on the complete knockout of YTHDF2 using the CRISPR-Cas9 system, in vivo and in vitro experiments were conducted to analyze the effects of YTHDF2 on tumor formation, radiotherapy and chemoradiotherapy resistance in GC. Our investigation revealed an increase in YTHDF2 levels in GC tissues, which was found to be associated with a negative prognosis. Under hypoxic conditions, high expression of YTHDF2 enhanced the invasion of gastric cancer cells, and high expression of YTHDF2 was associated with HIF-1a. YTHDF2 facilitated gastric cancer cell growth in vitro and in vivo. Moreover, the results of the present study demonstrated that YTHDF2 mediated the expression of CyclinD1 and stability of CyclinD1 mRNA. CyclinD1 knockdown inhibited YTHDF2-mediated GC cell proliferation whereas CyclinD1 overexpression ameliorated YTHDF2 knockdown-induced inhibition of GC progression. Furthermore, YTHDF2 also promoted resistance to DDP and CTX chemotherapy, along with radiotherapy treatment for GC cells. The findings suggested that YTHDF2 expression accelerated GC progression through a potential mechanism involving CyclinD1 expression, and enhanced chemoradiotherapy resistance. This indicated that YTHDF2 could be a promising prognostic biomarker and therapeutic target for individuals diagnosed with GC.
Insights
YTHDF2 promotes gastric cancer progression and resistance to chemotherapy and radiotherapy. Its elevated levels indicate a poor prognosis, suggesting YTHDF2 as a potential therapeutic target for gastric cancer.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- The role of YTHDF2 in gastric cancer (GC) remains controversial.
- Limited research exists on complete YTHDF2 knockout due to technical challenges.
- Further investigation is needed to clarify YTHDF2's clinical significance and biological function in GC.
Purpose of the Study:
- To analyze YTHDF2 expression levels in GC tissues and public databases.
- To investigate the effects of YTHDF2 knockout on GC progression, invasion, and treatment resistance.
- To elucidate the underlying molecular mechanisms of YTHDF2 in GC.
Main Methods:
- Analysis of YTHDF2 expression in GC patient samples and databases.
- CRISPR-Cas9 system for complete YTHDF2 knockout.
- In vitro and in vivo experiments to assess tumor formation and treatment resistance.
- Investigation of YTHDF2's effect on CyclinD1 expression and stability.
Main Results:
- Increased YTHDF2 levels in GC tissues correlate with negative prognosis.
- High YTHDF2 expression enhances GC cell invasion, particularly under hypoxia, and associates with HIF-1a.
- YTHDF2 facilitates GC cell growth, mediates CyclinD1 expression, and promotes resistance to chemotherapy (DDP, CTX) and radiotherapy.
Conclusions:
- YTHDF2 accelerates GC progression via CyclinD1 pathway and enhances chemoradiotherapy resistance.
- YTHDF2 serves as a potential prognostic biomarker for gastric cancer.
- Targeting YTHDF2 represents a promising therapeutic strategy for GC.
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