E2F7/RAD51AP1 Axis Inhibits Endometrial Cancer Sensitivity to 5-FU via the Fatty Acid Metabolic Pathway

Xiaoyan Huang1, Zaixin Wu2, Chunhong Xiao3

  • 1Department of Oncology, 900TH Hospital of Joint Logistics Support Force, Fuzhou, P.R. China; huangxiaoyan122022@163.com.

Anticancer Research
|November 1, 2023
PubMed
Abstract

Insights

The E2F7/RAD51AP1 axis promotes endometrial cancer (EC) growth and reduces 5-fluorouracil (5-FU) sensitivity by altering fatty acid metabolism. This pathway presents a potential new target for EC treatment.

Area of Science:

  • Gynecologic Oncology
  • Cancer Biology
  • Molecular Therapeutics

Background:

  • Endometrial cancer (EC) exhibits decreased sensitivity to 5-fluorouracil (5-FU) chemotherapy, necessitating research into underlying resistance mechanisms.
  • Investigating factors that influence EC response to 5-FU is crucial for improving treatment efficacy.

Purpose of the Study:

  • To explore the role of RAD51AP1, transcriptionally activated by E2F7, in EC sensitivity to 5-FU.
  • To elucidate the involvement of the fatty acid metabolic pathway in the E2F7/RAD51AP1-mediated regulation of 5-FU response.

Main Methods:

  • Utilized The Cancer Genome Atlas (TCGA) data for differential gene expression analysis in EC.
  • Employed bioinformatics, qRT-PCR, western blot, ChIP, and dual luciferase assays to validate E2F7-RAD51AP1 interactions.
  • Assessed 5-FU sensitivity using CCK-8 assays, cell apoptosis via flow cytometry, and protein expression related to apoptosis and fatty acid metabolism.

Main Results:

  • Bioinformatics analysis revealed high expression of E2F7 and RAD51AP1 in EC, with predicted binding sites.
  • ChIP and dual luciferase assays confirmed E2F7 directly binds to the RAD51AP1 promoter.
  • Overexpression of RAD51AP1 enhanced EC cell growth and fatty acid metabolism, while decreasing 5-FU sensitivity; E2F7 silencing counteracted these effects.

Conclusions:

  • The E2F7/RAD51AP1 axis promotes EC cell growth and diminishes sensitivity to 5-FU by modulating fatty acid metabolism.
  • The E2F7/RAD51AP1 pathway represents a potential novel therapeutic target for endometrial cancer.

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