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Discovering Genotype Variants in an Infant with VACTERL through Clinical Exome Sequencing: A Support for Personalized
Gloria Pelizzo1,2, Luigi Chiricosta3, Emanuela Mazzon3
1Pediatric Surgery Unit, Ospedale dei Bambini "Vittore Buzzi", 20154 Milano, Italy.
Insights
Clinical exome sequencing identified genetic variants linked to noncommunicable diseases in an infant with VACTERL association. These findings may aid in personalized risk assessment for chronic conditions and cancer.
Area of Science:
- Genetics and Genomics
- Developmental Biology
- Oncology
Background:
- Congenital anomalies, such as the Vertebral, Anorectal, Cardiac, Tracheoesophageal, Genitourinary, and Limb (VACTERL) association, are complex conditions with potential links to noncommunicable diseases (NCDs).
- Understanding the genetic underpinnings of these associations is crucial for predicting long-term health risks.
Observation:
- Clinical exome analysis was performed on an infant diagnosed with VACTERL association.
- Six potentially disease-linked variants were identified, including those associated with myocardial infarction (OLR1, PSMA6), cardiac conduction defects (AKAP10), and artery disease (PON1).
- Metabolic alterations were suggested by variants in EPHX2 and GHRL, alongside three variants linked to colon cancer (CCND1, AURKA, PTPRJ).
Findings:
- The study identified 15 rare variants in cancer genes, including tumor suppressors (SDHA, RB1CC1, PTCH1, DMBT1, BCR) and proto-oncogenes (MERTK, CSF1R, MYB, ROS1, PCM1, FGFR2, MYH11, BRCC3), with allele frequencies below 0.01 in GnomAD.
- A correlation was observed between the patient's cardiac and metabolic phenotypic traits and their genotype.
- The genetic profile suggests a potential predisposition to developing neoplasia.
Implications:
- Clinical exome sequencing can identify genetic biomarkers for VACTERL association, aiding in the prediction of malignancy risk and other chronic diseases.
- Personalized risk assessment based on exome data can inform long-term management strategies for patients with VACTERL syndrome.
- This approach may help anticipate and mitigate future health complications, including those arising during puberty and adulthood.
Abstract:
Congenital anomalies may have an increased risk of noncommunicable diseases (NCDs) We performed a clinical exome analysis in an infant affected by "Vertebral, Anorectal, Cardiac, Tracheoesophageal, Genitourinary, and Limb" (VACTERL) malformation association to identify potential biomarkers that may be helpful for preventing malignancy risk or other chronic processes. Among the variants, six variants that may be linked with VACTERL were identified in the exome analysis. The variants c.501G>C on OLR1 and c.-8C>G on PSMA6 were previously associated with myocardial infarction. The variants c.1936A>G on AKAP10 and c.575A>G on PON1 are linked to defects in cardiac conduction and artery disease, respectively. Alterations in metabolism were also suggested by the variants c.860G>A on EPHX2 and c.214C>A on GHRL. In addition, three variants associated with colon cancer were discovered. Specifically, the reported variants were c.723G>A on CCND1 and c.91T>A on AURKA proto-oncogenes as well as c.827A>C in the tumor suppressor PTPRJ. A further inspection identified 15 rare variants carried by cancer genes. Specifically, these mutations are located on five tumor suppressors (SDHA, RB1CC1, PTCH1, DMBT1, BCR) and eight proto-oncogenes (MERTK, CSF1R, MYB, ROS1, PCM1, FGFR2, MYH11, BRCC3) and have an allele frequency lower than 0.01 in the Genome Aggregation Database (GnomAD). We observed that the cardiac and metabolic phenotypic traits are linked with the genotype of the patient. In addition, the risk of developing neoplasia cannot be excluded a priori. Long-term surgical issues of patients with VATER syndrome could benefit from the clinical exome sequencing of a personalized risk assessment for the appearance of further disease in pubertal timing and adult age.
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