Sirtuins' Deregulation in Bladder Cancer: SIRT7 Is Implicated in Tumor Progression through Epithelial to Mesenchymal

Sara Monteiro-Reis1, Ana Lameirinhas1,2, Vera Miranda-Gonçalves1

  • 1Cancer Biology and Epigenetics Group, IPO Porto Research Center (CI-IPOP), Portuguese Oncology Institute of Porto (IPO Porto), Rua Dr. António Bernardino de Almeida, 4200-072 Porto, Portugal.

Cancers
|April 30, 2020
PubMed

Insights

Sirtuins are deregulated in bladder cancer (BlCa). Specifically, reduced SIRT7 promotes cancer cell invasion and metastasis by increasing EMT markers via the EZH2-CDH1 pathway.

Area of Science:

  • Oncology
  • Molecular Biology
  • Epigenetics

Background:

  • Sirtuins (SIRTs) are NAD+-dependent deacetylases implicated in aging and cancer.
  • The role of sirtuins in bladder cancer (BlCa) pathogenesis is not well understood.
  • Understanding BlCa biology can lead to novel biomarkers and targeted therapies.

Purpose of the Study:

  • To investigate the expression and function of the sirtuin family in BlCa.
  • To evaluate sirtuins as potential biomarkers and therapeutic targets for BlCa.

Main Methods:

  • SIRT1-7 transcript and protein levels were analyzed in BlCa tissues and cell lines.
  • SIRT7 was downregulated using lentiviral transduction in MGHU3, 5637, and J82 cells.
  • In vitro assays assessed cell migration, invasion, epithelial-mesenchymal transition (EMT), and EZH2/H3K27me3 levels.

Main Results:

  • SIRT1, 2, 4, and 5 were downregulated, while SIRT6 and 7 were upregulated in BlCa compared to normal tissues.
  • TCGA cohort analysis confirmed these expression patterns.
  • SIRT7 downregulation correlated with muscle-invasive BlCa and promoted cell migration and invasion.
  • SIRT7 knockdown increased EMT markers, decreased E-Cadherin (CDH1), and upregulated EZH2 and H3K27me3 deposition at the CDH1 promoter.

Conclusions:

  • Sirtuins are globally deregulated in BlCa.
  • SIRT7 downregulation is a key driver of BlCa invasiveness.
  • SIRT7 loss promotes EMT and metastasis through the EZH2-CDH1 axis, highlighting SIRT7 as a potential therapeutic target.

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