Methylation of the Phospholipase A2 Receptor 1 Promoter Region in Childhood B Cell Acute Lymphoblastic Leukaemia.
Markus FriedemannKatharina GutewortDana ThiemBrit NackeCarsten JandeckBjörn Sönke LangeOlga A SukochevaMeinolf SuttorpMario MenschikowskiPublished in: Scientific reports (2020)
Acute lymphoblastic leukaemia (ALL) is the most common form of paediatric cancer and epigenetic aberrations are determinants of leukaemogenesis. The aim of this study was to investigate the methylation degree of a distinct phospholipase A2 receptor 1 (PLA2R1) promoter region in paediatric ALL patients and to evaluate its relevance as new biomarker for monitoring treatment response and burden of residual disease. The impact of PLA2R1 re-expression on proliferative parameters was assessed in vitro in Jurkat cells with PLA2R1 naturally silenced by DNA methylation. Genomic DNA was isolated from bone marrow (BM) and peripheral blood (PB) of 44 paediatric ALL patients. PLA2R1 methylation was analysed using digital PCR and compared to 20 healthy controls. Transfected Jurkat cells were investigated using cell growth curve analysis and flow cytometry. PLA2R1 was found hypermethylated in BM and PB from pre-B and common ALL patients, and in patients with the disease relapse. PLA2R1 methylation decreased along with leukaemic blast cell reduction during ALL induction treatment. In vitro analysis revealed an anti-proliferative phenotype associated with PLA2R1 re-expression, suggesting a tumour-suppressive function of PLA2R1. Collected data indicates that PLA2R1 promoter methylation quantitation can be used as biomarker for ALL induction treatment control, risk stratification, and early detection of ALL relapse.
Keyphrases
- dna methylation
- end stage renal disease
- gene expression
- newly diagnosed
- genome wide
- ejection fraction
- chronic kidney disease
- bone marrow
- intensive care unit
- emergency department
- induced apoptosis
- poor prognosis
- peritoneal dialysis
- peripheral blood
- mass spectrometry
- squamous cell carcinoma
- single cell
- flow cytometry
- oxidative stress
- heavy metals
- cell proliferation
- young adults
- machine learning
- single molecule
- risk assessment
- cell death
- ms ms
- extracorporeal membrane oxygenation
- artificial intelligence
- liquid chromatography tandem mass spectrometry
- patient reported
- tandem mass spectrometry
- drug induced
- replacement therapy
- early life
- free survival