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Screening of mutations in genes that predispose to hereditary paragangliomas and pheochromocytomas
S Lefebvre1, F Borson-Chazot, N Boutry-Kryza
1Hospices Civils de Lyon, Hôpital E. Herriot, Génétique moléculaire et clinique, 5 place d'Arsonval, Lyon, France.
Abstract:
Thirty per cent of the paragangliomas and pheochromocytomas reported are hereditary. Mutations in SDHB, SDHC, SDHD, and more recently SDHAF2 and TMEM127 genes have been described in these hereditary tumors. We looked for mutations in these 5 genes in a series of 269 patients with paragangliomas and/or pheochromocytomas. The SDHB, SDHC, and SDHD genes were analyzed in a series of 269 unrelated index patients with paragangliomas and/or pheochromocytomas using dHPLC screening of point mutations followed by direct sequencing and Multiplex PCR Liquid Chromatography to detect large rearrangements confirmed by quantitative PCR. In a second phase, we adapted Multiplex PCR Liquid Chromatography to the SDHAF2 and TMEM127 genes. This method and direct sequencing were applied to 230 patients without the SDHB, C, D mutations. Of the 269 patients, 44 carried a mutation (16.3%). Thirty-seven different mutations were identified: 18 in SDHB (including 2 large deletions), 8 in SDHD, 6 in SDHC, 5 in TMEM127, and no mutations in SDHAF2. Thirteen mutations have not been published so far. An exhaustive study of the different genes is needed to make possible a familial genetic diagnosis in paraganglioma and pheochromocytoma hereditary syndromes. Although mutations in SDHC and TMEM127 are less frequent than mutations in SDHB and SDHD, they also have less evident clinical feature indicators. Analyzing SDHAF2 must be restricted to familial extra-adrenal paragangliomas. Multiplex PCR Liquid Chromatography is a sensitive, fast, and inexpensive method for screening large rearrangements, which are infrequent in these syndromes.
Insights
Genetic testing identified mutations in key genes for hereditary paraganglioma and pheochromocytoma syndromes. This research highlights the importance of comprehensive genetic analysis for familial diagnosis.
Area of Science:
- Endocrinology
- Genetics
- Oncology
Background:
- Hereditary paraganglioma and pheochromocytoma syndromes are often linked to mutations in specific genes.
- Known causative genes include SDHB, SDHC, SDHD, SDHAF2, and TMEM127.
Purpose of the Study:
- To investigate mutations in the SDHB, SDHC, SDHD, SDHAF2, and TMEM127 genes in a cohort of patients with paraganglioma and/or pheochromocytoma.
- To identify novel mutations and assess the utility of Multiplex PCR Liquid Chromatography for detecting genetic alterations.
Main Methods:
- Screening of SDHB, SDHC, and SDHD genes using dHPLC and direct sequencing for point mutations.
- Multiplex PCR Liquid Chromatography coupled with quantitative PCR for detecting large rearrangements.
- Application of Multiplex PCR Liquid Chromatography and direct sequencing to SDHAF2 and TMEM127 genes in a subset of patients.
Main Results:
- Mutations were identified in 44 out of 269 patients (16.3%).
- Thirty-seven distinct mutations were found: 18 in SDHB, 8 in SDHD, 6 in SDHC, and 5 in TMEM127; no mutations were detected in SDHAF2.
- Thirteen of the identified mutations were previously unreported. SDHC and TMEM127 mutations present with less distinct clinical indicators.
Conclusions:
- Comprehensive genetic analysis of these genes is crucial for diagnosing hereditary paraganglioma and pheochromocytoma syndromes.
- SDHAF2 gene analysis should be limited to familial extra-adrenal paragangliomas.
- Multiplex PCR Liquid Chromatography is an efficient method for detecting large rearrangements in these hereditary tumor syndromes.
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