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Published on: June 21, 2018
A pilot study of childhood-onset Takayasu arteritis using whole exome sequencing suggests oligogenic inheritance
Jayakanthan Kabeerdoss1,2, Sumita Danda3, Priyanka Srivastava4
1Department of Clinical Immunology and Rheumatology, Christian Medical College, Vellore, Tamil Nadu, India. Jayakanthankk@gmail.com.
Insights
Genetic variants in complement and other genes are associated with paediatric Takayasu arteritis (pTA) in South Asian children. This study identified novel variants, suggesting digenic inheritance and highlighting the role of rare variants in pTA pathogenesis.
Area of Science:
- Genetics
- Immunology
- Paediatric Rheumatology
Background:
- Takayasu arteritis (TA) is a rare, chronic inflammatory disease affecting the aorta and its branches.
- Paediatric TA (pTA) presents in children and adolescents, with its genetic basis not fully understood.
- Previous studies suggested monogenic mutations in specific genes, but a comprehensive genetic analysis in South Asian populations was lacking.
Purpose of the Study:
- To investigate the genetic underpinnings of paediatric Takayasu arteritis (pTA) in South Asian children.
- To identify novel pathogenic variants in genes associated with vasculitis and autoinflammatory conditions.
- To explore potential digenic inheritance patterns in pTA development.
Main Methods:
- Whole exome sequencing was performed on 14 children diagnosed with pTA.
- Genetic screening included common variants in the Indian population, such as ADA2 c.139G>A; p.Gly47Arg.
- Patients were classified based on Numano's angiographic classification.
Main Results:
- Novel variants were identified in ten genes, including those in the classical complement pathway (C2, C3, C6, C7, C9) and others (CYBA, SH3BP2, GUCY2C, CTC1, COL5A1, NLPR3).
- Two patients exhibited heterozygous pathogenic variants in C3 and COL5A1, suggesting a potential digenic inheritance model.
- One patient had a homozygous variant in CYBA; no ADA2 variants were found in any patient.
Conclusions:
- Whole exome sequencing revealed a combination of rare variants in C3, COL5A1, and CYBA associated with pTA development in children.
- The findings suggest that genetic variations in the complement pathway and other related genes play a significant role in pTA pathogenesis.
- This study highlights the importance of investigating genetic factors, including digenic inheritance, in understanding pTA, particularly in the South Asian population.
Abstract:
Takayasu arteritis (TA) is a chronic granulomatous inflammatory disease affecting the aorta and its branches. Paediatric TA (pTA) may present from 6 months after birth till the adolescent age group. Genetics and pathogenesis of pTA are not fully understood. Earlier studies reported monogenic mutation in NOD2, XIAP, and STAT1 genes in patients with pTA. TA, a relatively rare disease, is more common in geographical pockets, including India. We hypothesized that South Asian patients with pTA, namely, those of Indian subcontinent origin, may have clinically relevant and unique pathogenic variants involving one or more genes, especially those linked to genetically driven vasculitic illnesses, including autoinflammatory pathologies. Children with pTA fulfilling EULAR/PRINTO/PReS classification criteria and presenting with clinical symptoms to the Paediatric Rheumatology clinic of Christian Medical College, Vellore, were included. Blood samples were collected after getting informed consent from parents or guardians and assent forms from children. DNA was extracted from whole blood using the Qiagen DNA extraction kit. Initially, the common variant in Indian population, namely, ADA2 c.139G > A; p.Gly47Arg, was screened, followed by whole exome sequencing. Fourteen children were recruited for the study. Median age of patients was 11 years (4 months-14 years) with a male-to-female ratio of 4:10. Distribution of angiographic subsets by Numano's classification of included children were as follows: type 5 (n = 7), type 4 (n = 5), and type 3 (n = 2). We identified novel variants in ten different genes. This include variants in genes of classical complement pathway, namely, C2, C3, C6, C7, and C9, and other genes, namely, CYBA, SH3BP2, GUCY2C, CTC1, COL5A1, and NLPR3. Two of 14 patients have heterozygous pathogenic variants; this implies that combination of heterozygous variants in C3 and COL5A1 might lead to disease development, suggesting digenic inheritance. One patient has a homozygous variant in CYBA. None of the patients were identified to have ADA2 variants. Whole exome sequencing reveals combination of rare variants in genes C3, COL5A1, and CYBA associated with disease development in children with Takayasu Arteritis. Key Points • We identified novel variants in genes of classical complement pathway, namely, C2, C3, C6, C7, and C9, and other genes, namely, CYBA, SH3BP2, GUCY2C, CTC1, COL5A1, and NLPR3. • Two of 14 patients have heterozygous pathogenic variants in C3 and COL5A1; this may have implications in disease development, suggesting digenic inheritance. • One patient has homozygous variant in CYBA. • None of the patients were identified to have ADA2 variants.
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