A homozygote novel L451W mutation in CECR1 gene causes deficiency of adenosine deaminase 2 in a pediatric patient representing with chronic lymphoproliferation and cytopenia.
Rabia Miray Kisla EkinciSibel BalcıSerdar CeylanerHatice Ilgen SasmazGoksel LeblebisatanFaruk IncecikMustafa YilmazPublished in: Pediatric hematology and oncology (2019)
Deficiency of Adenosine Deaminase 2 (DADA2) is a monogenic autoinflammatory disorder characterized by livedo reticularis, skin ulcers, subcutaneous rash, aphthous ulcers, and leukocytoclastic vasculitis, neurological signs such as early onset stroke and polyneuropathy. A minority of DADA2 patients suffer from severe cytopenia and lymphoproliferation. Herein, we report an adolescent patient, followed up as having a hematological disorder for many years, eventually diagnosed as having DADA2. In view of the presence of elevated acute phase reactants, hepatosplenomegaly, low IgM level, lymphopenia, anemia, and neutropenia, and a subtle neurological involvement we considered DADA2 diagnosis. The diagnosis was confirmed by identification of a novel L451W mutation in CECR1 gene. The patient has been successfully treated with etanercept, monthly intravenous immunoglobulin replacement, and low-dose methylprednisolone. In conclusion, although the absence of skin and neurological findings, low IgM levels, and persistent lymphopenia should lead the physicians to consider DADA2 in patients with particularly complicated hematological abnormalities.
Keyphrases
- early onset
- low dose
- high dose
- wound healing
- end stage renal disease
- late onset
- chronic kidney disease
- case report
- genome wide
- newly diagnosed
- copy number
- ejection fraction
- primary care
- cerebral ischemia
- rheumatoid arthritis
- atrial fibrillation
- soft tissue
- young adults
- protein kinase
- mental health
- prognostic factors
- peritoneal dialysis
- replacement therapy
- dna methylation
- genome wide identification
- patient reported outcomes
- ankylosing spondylitis
- subarachnoid hemorrhage
- blood brain barrier
- transcription factor
- genome wide analysis