Common Variable Immunodeficiency Caused by FANC Mutations.
Yujin SekinakaNoriko MitsuikiKohsuke ImaiMiharu YabeHiromasa YabeKanako Mitsui-SekinakaKenichi HonmaMasatoshi TakagiAyako AraiKenichi YoshidaYusuke OkunoYuichi ShiraishiKenichi ChibaHiroko TanakaSatoru MiyanoHideki MuramatsuSeiji KojimaAsuka HiraMinoru TakataOsamu OharaSeishi OgawaTomohiro MorioShigeaki NonoyamaPublished in: Journal of clinical immunology (2017)
Common variable immunodeficiency (CVID) is the most common adult-onset primary antibody deficiency disease due to various causative genes. Several genes, which are known to be the cause of different diseases, have recently been reported as the cause of CVID in patients by performing whole exome sequencing (WES) analysis. Here, we found FANC gene mutations as a cause of adult-onset CVID in two patients. B cells were absent and CD4+ T cells were skewed toward CD45RO+ memory T cells. T-cell receptor excision circles (TRECs) and signal joint kappa-deleting recombination excision circles (sjKRECs) were undetectable in both patients. Both patients had no anemia, neutropenia, or thrombocytopenia. Using WES, we identified compound heterozygous mutations of FANCE in one patient and homozygous mutation of FANCA in another patient. The impaired function of FANC protein complex was confirmed by a monoubiquitination assay and by chromosome fragility test. We then performed several immunological evaluations including quantitative lymphocyte analysis and TRECs/sjKRECs analysis for 32 individuals with Fanconi anemia (FA). In total, 22 FA patients (68.8%) were found to have immunological abnormalities, suggesting that such immunological findings may be common in FA patients. These data indicate that FANC mutations are involved in impaired lymphogenesis probably by the accumulation of DNA replication stress, leading to CVID. It is important to diagnose FA because it drastically changes clinical management. We propose that FANC mutations can cause isolated immunodeficiency in addition to bone marrow failure and malignancy.
Keyphrases
- end stage renal disease
- chronic kidney disease
- ejection fraction
- newly diagnosed
- bone marrow
- prognostic factors
- genome wide
- gene expression
- machine learning
- small molecule
- mesenchymal stem cells
- case report
- big data
- single cell
- dna methylation
- transcription factor
- dna repair
- nuclear factor
- binding protein
- artificial intelligence
- electronic health record