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Ezgi M. Aksu

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Ezgi M. Aksu

Researcher
Department of Clinical and Molecular Medicine
Faculty of Medicine and Health Sciences

merdane.e.aksu@ntnu.no
+4773413248 Laboratoriesenteret, Øya
PROMEC homepage
About Publications

About

 

I am a researcher at the Proteomics and Modomics Experimental Core facility (PROMEC), specializing in the analysis of DNA and RNA base modifications using mass spectrometry. 

I am also a PhD canditate at Barbara van Loon`s Genome dynamics during physiological and disease development. My research focuses on genome dynamics during neurodevelopment. My further research interests are pluripotent stem cells, brain organoids, DNA repair, and the application of 2D and 3D stem cell based disease models to study neurodevelopmental and neurological disorders.

Competencies

  • Base modifications
  • DNA Repair
  • Neurodevelopmental disorders
  • Organoids
  • Stem Cells

Publications

  • Chronological
  • By category
  • All publications registered in NVA

2021

  • Aprigliano, Rossana; Aksu, Merdane Ezgi; Bradamante, Stefano; Mihaljevic, Boris; Wang, Wei; Rian, Kristin. (2021) Increased p53 signaling impairs neural differentiation in HUWE1-promoted intellectual disabilities. Cell Reports Medicine
    Academic article
  • Rolinski, Milosz; Montaldo, Nicola Pietro; Aksu, Merdane Ezgi; Martin, Sarah Fordyce; Brambilla, Alessandro; Kunath, Nicolas. (2021) Loss of Mediator complex subunit 13 (MED13) promotes resistance to alkylation through cyclin D1 upregulation. Nucleic Acids Research (NAR)
    Academic article

Journal publications

  • Aprigliano, Rossana; Aksu, Merdane Ezgi; Bradamante, Stefano; Mihaljevic, Boris; Wang, Wei; Rian, Kristin. (2021) Increased p53 signaling impairs neural differentiation in HUWE1-promoted intellectual disabilities. Cell Reports Medicine
    Academic article
  • Rolinski, Milosz; Montaldo, Nicola Pietro; Aksu, Merdane Ezgi; Martin, Sarah Fordyce; Brambilla, Alessandro; Kunath, Nicolas. (2021) Loss of Mediator complex subunit 13 (MED13) promotes resistance to alkylation through cyclin D1 upregulation. Nucleic Acids Research (NAR)
    Academic article

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