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Updated: Jun 20, 2025

Author Spotlight: Exploring the Role of FAM83A in Cervical Cancer
Published on: February 9, 2024
Quantitative Proteomics Reveal the Mechanism of MiR-138-5p Suppressing Cervical Cancer via Targeting ZNF385A
Qihang Peng1, Yiting Deng1, Guopan Li1
1College of Life Science, Yangtze University, Jingzhou 434025, China.
Abstract:
MicroRNAs are short, noncoding RNA molecules that exert pivotal roles in cancer development and progression by modulating various target genes. There is growing evidence that miR-138-5p is significantly involved in cervical cancer (CC). However, its precise molecular mechanism has yet to be fully understood. In the current investigation, a quantitative proteomics approach was utilized to detect possible miR-138-5p targets in HeLa cells systematically. In total, 364 proteins were downregulated, and 150 were upregulated after miR-138-5p overexpression. Bioinformatic analysis of these differentially expressed proteins (DEPs) revealed significant enrichment in several cancer-related pathways. Zinc finger protein 385A (ZNF385A) was determined as a novel direct target of miR-138-5p and discovered to facilitate the proliferation, migration, and cell cycle progression of HeLa cells. SFN and Fas cell surface death receptor(FAS) were then identified as functional downstream effectors of ZNF385A and miR-138-5p. Moreover, a tumor xenograft experiment was conducted to validate the association of miR-138-5p-ZNF385A-SFN/FAS axis with the development of CC in vivo. Our findings have collectively established a catalog of proteins mediated by miR-138-5p and have provided an in-depth comprehension of the molecular mechanisms responsible for the inhibitory effect of miR-138-5p on CC. The miR-138-5p-ZNF385A-SFN/FAS axis could also be beneficial to the identification of new therapeutic targets.
Insights
MicroRNA-138-5p inhibits cervical cancer by targeting ZNF385A, which regulates SFN/FAS. This study elucidates the miR-138-5p-ZNF385A-SFN/FAS axis for potential therapeutic strategies.
Area of Science:
- Molecular Biology
- Oncology
- Genetics
Background:
- MicroRNAs regulate gene expression and are implicated in cancer.
- miR-138-5p plays a role in cervical cancer (CC), but its mechanism is unclear.
Purpose of the Study:
- To identify miR-138-5p targets in CC using proteomics.
- To elucidate the molecular mechanism of miR-138-5p in CC progression.
Main Methods:
- Quantitative proteomics to identify differentially expressed proteins (DEPs) after miR-138-5p overexpression in HeLa cells.
- Bioinformatic analysis of DEPs to identify enriched cancer-related pathways.
- Validation of ZNF385A as a direct miR-138-5p target and its downstream effectors SFN and FAS.
- In vivo tumor xenograft experiments to confirm the miR-138-5p-ZNF385A-SFN/FAS axis in CC development.
Main Results:
- Overexpression of miR-138-5p led to downregulation of 364 proteins and upregulation of 150 proteins.
- ZNF385A was identified as a direct target of miR-138-5p, promoting HeLa cell proliferation, migration, and cell cycle.
- SFN and FAS were confirmed as functional downstream effectors of ZNF385A and miR-138-5p.
- The miR-138-5p-ZNF385A-SFN/FAS axis was validated in vivo in CC development.
Conclusions:
- This study provides a comprehensive proteomic catalog of miR-138-5p-mediated proteins in CC.
- The identified miR-138-5p-ZNF385A-SFN/FAS axis offers mechanistic insights into miR-138-5p's inhibitory role in CC.
- This axis represents a potential therapeutic target for cervical cancer treatment.

