Acute pre-B lymphoblastic leukemia and congenital anomalies in a child with a de novo 22q11.1q11.22 duplication

Author:

Vaisvilas M1,Dirse V23,Aleksiuniene B45,Tamuliene I6,Cimbalistiene L45,Utkus A15,Rascon J16

Affiliation:

1. Faculty of Medicine , Vilnius University , Vilnius , Lithuania

2. Hematology, Oncology and Transfusion Medicine Center , Vilnius University Hospital Santaros Klinikos , Vilnius , Lithuania

3. Department of Internal, Family Medicine and Oncology , Institute of Clinical Medicine of the Faculty of Medicine of Vilnius University , Vilnius , Lithuania

4. Department of Human and Medical Genetics , Institute of Biomedical Sciences of the Faculty of Medicine of Vilnius University , Vilnius , Lithuania

5. Center for Medical Genetics , Vilnius University Hospital Santaros Klinikos , Vilnius , Lithuania

6. Center for Pediatric Oncology and Hematology, Children’s Hospital , Affiliate of Vilnius University Hospital Santaros Klinikos , Vilnius , Lithuania

Abstract

Abstract Microdeletions and microduplications are recurrent in the q11.2 region of chromosome 22. The 22q11.2 duplication syndrome is an extremely variable disorder with a phenotype ranging from severe intellectual disability, facial dysmorphism, heart defects, and urogenital abnormalities to very mild symptoms. Both benign and malignant hematological entities are rare. A male patient was diagnosed with mild facial dysmorphia, congenital heart anomalies shortly after birth and acute bowel obstruction due to malrotation of the intestine at the age of 3 years. A whole-genome single nucleotide polymorphism (SNP) array revealed a de novo 6.6 Mb duplication in the 22q11.1q11.22 chromosomal region. A year later, the patient was diagnosed with acute pre-B lymphoblastic leukemia (pre-B ALL). Five genes, CDC45, CLTCL1, DGCR2, GP1BB and SEPT5, in the 22q11.1q11.22 region are potentially responsible for cell cycle division. We hypothesized that dosage imbalance of genes implicated in the rearrangement could have disrupted the balance between cell growth and differentiation and played a role in the initiation of malignancy with a hyperdiploid leukemic clone, whereas over-expression of the TBX1 gene might have been responsible for congenital heart defects and mild facial dysmorphia.

Publisher

Walter de Gruyter GmbH

Subject

Genetics (clinical),Genetics

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