Using comprehensive genomic and functional analyses for resolving genotype–phenotype mismatches in children with suspected CMMRD in Lebanon: an IRRDC study
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Springer Science and Business Media Deutschland GmbH
Abstract
Constitutional mismatch repair deficiency (CMMRD) is an aggressive and highly penetrant cancer predisposition syndrome. Because of its variable clinical presentation and phenotypical overlap with neurofibromatosis, timely diagnosis remains challenging, especially in countries with limited resources. Since current tests are either difficult to implement or interpret or both we used a novel and relatively inexpensive functional genomic assay (LOGIC) which has been recently reported to have high sensitivity and specificity in diagnosing CMMRD. Here we report the clinical and molecular characteristics of nine patients diagnosed with cancer and suspected to have CMMRD and highlight the challenges with variant interpretation and immunohistochemical analysis that led to an uncertain interpretation of genetic findings in 6 of the 9 patients. Using LOGIC, we were able to confirm the diagnosis of CMMRD in 7 and likely exclude it in 2 patients, resolving ambiguous result interpretation. LOGIC also enabled predictive testing of asymptomatic siblings for early diagnosis and implementation of surveillance. This study highlights the varied manifestations and practical limitations of current diagnostic criteria for CMMRD, and the importance of international collaboration for implementing robust and low-cost functional assays for resolving diagnostic challenges. © 2023, The Author(s), under exclusive licence to Springer-Verlag GmbH Germany, part of Springer Nature.
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Brain neoplasms, Colorectal neoplasms, Genomics, Genotype, Humans, Lebanon, Phenotype, Acute lymphoblastic leukemia, Adolescent, Article, Cancer center, Child, Childhood leukemia, Clinical article, Clinical feature, Cohort analysis, Colorectal adenocarcinoma, Constitutional mismatch repair deficiency syndrome, Disease surveillance, Early diagnosis, Female, Genetic screening, Genome analysis, Genomic instability, Genotype phenotype correlation, Glioblastoma, Human, Human tissue, Immunohistochemistry, Low coverage whole genome instability characterization, Male, Medulloblastoma, Nonhodgkin lymphoma, Pilomatrix carcinoma, Preschool child, School child, Sibling, T cell lymphoma, Brain tumor, Colorectal tumor