Interfering microRNA-410 attenuates atherosclerosis via the HDAC1/KLF5/IKBα/NF-κB axis

Shanji Nan1, Ying Wang2, Chengbi Xu3

  • 1Department of Neurology, The Second Hospital of Jilin University, Changchun 130041, Jilin Province, PR China.

Insights

MicroRNA-410 targets histone deacetylase 1, suppressing the NF-κB pathway to inhibit atherosclerosis development. Blocking miR-410 promotes this protective effect, offering a potential therapeutic strategy for atherosclerosis.

Area of Science:

  • Cardiovascular Biology
  • Molecular Medicine
  • Atherosclerosis Research

Background:

  • Atherosclerosis is a complex inflammatory disease.
  • MicroRNA-410 (miR-410) is implicated in atherosclerosis pathogenesis.
  • The precise molecular mechanisms of miR-410 in this process require elucidation.

Purpose of the Study:

  • To investigate the underlying mechanism of the miR-410/histone deacetylase 1 (HDAC1)/KLF5/nuclear factor κB (NF-κB) axis in atherosclerosis.
  • To determine the role of miR-410 in regulating endothelial cell function in the context of atherosclerosis.

Main Methods:

  • Quantitative real-time PCR and western blot to measure gene and protein expression in mouse models and HUVECs.
  • Bioinformatics prediction, dual luciferase reporter gene assays, and RNA immunoprecipitation (RIP) to confirm miR-410 and HDAC1 interactions.
  • Coimmunoprecipitation (coIP) to assess HDAC1 and KLF5 interaction.
  • Cell Counting Kit-8 (CCK-8), flow cytometry, and colony-formation assays to evaluate cell function.

Main Results:

  • miR-410 directly targets HDAC1, and HDAC1 targets transcription factor KLF5.
  • HDAC1 upregulates IKBα expression, subsequently suppressing NF-κB activation.
  • Silencing miR-410 or overexpressing HDAC1 enhanced HUVEC viability, reduced apoptosis, and suppressed inflammatory responses.

Conclusions:

  • The miR-410/HDAC1/KLF5/IKBα/NF-κB pathway is a critical regulator in atherosclerosis.
  • Blocking miR-410 promotes HDAC1 expression, leading to increased IKBα and suppressed NF-κB, thereby preventing atherosclerosis development.
  • Targeting the miR-410/HDAC1 axis presents a potential therapeutic avenue for atherosclerosis.

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