Experimental Validation and Multi-omics Analysis Identified ARPC1A as a Novel Oncogene and Potential Therapeutic

Jun Yang1, Chengcheng Xue2, Zesong He1

  • 1Department of Neurosurgery, the 1st affiliated hospital, Jiangxi Medical College, Nanchang University, No.17, Yongwai Street, Nanchang, Jiangxi province, 330006, China.

Journal of Cancer
|June 24, 2024
PubMed

Insights

Actin-related protein 2/3 complex subunit 1A (ARPC1A) promotes cancer growth and resistance to temozolomide (TMZ) in glioblastoma. Silencing ARPC1A offers a potential therapeutic strategy for glioblastoma treatment.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cancer Research

Background:

  • Actin-related protein 2/3 complex subunit 1A (ARPC1A) is involved in actin polymerization and cancer progression.
  • The precise role of ARPC1A in diverse cancers, particularly glioblastoma multiforme (GBM), requires further elucidation.

Purpose of the Study:

  • To investigate the expression, prognostic significance, and mutational landscape of ARPC1A across various cancers.
  • To explore ARPC1A's regulatory mechanisms in GBM, including its impact on proliferation, metastasis, and temozolomide (TMZ) resistance.

Main Methods:

  • Analysis of ARPC1A expression, prognostic value, mutations, and immune correlations in cancer datasets.
  • Gene Set Enrichment Analysis (GSEA) and single-cell sequencing to understand ARPC1A's role in GBM.
  • In vitro experiments involving ARPC1A knockdown in GBM cells.

Main Results:

  • ARPC1A is upregulated in most cancers, correlating with poorer prognosis and negative immune cell infiltration.
  • ARPC1A promotes tumor proliferation and epithelial-mesenchymal transition, as indicated by GSEA and single-cell data.
  • ARPC1A knockdown inhibits GBM cell proliferation and metastasis, and crucially, reduces TMZ resistance.

Conclusions:

  • ARPC1A serves as a prognostic biomarker in multiple cancers and holds potential for immunotherapy applications.
  • Modulating ARPC1A offers a novel therapeutic avenue for GBM, impacting its malignant behavior and chemoresistance.

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