Whole exome sequencing in familial isolated primary hyperparathyroidism
Purpose Familial isolated hyperparathyroidism (FIHP) is a rare inherited disease accounting for 1% of all cases of primary hyperparathyroidism (PHPT). It is genetically heterogeneous being associated with mutations in different genes, including MEN1 , CDC73 , CASR, and recently GCM2 . The aim of the...
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Veröffentlicht in: | Journal of endocrinological investigation 2020-02, Vol.43 (2), p.231-245 |
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Sprache: | eng |
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Zusammenfassung: | Purpose
Familial isolated hyperparathyroidism (FIHP) is a rare inherited disease accounting for 1% of all cases of primary hyperparathyroidism (PHPT). It is genetically heterogeneous being associated with mutations in different genes, including
MEN1
,
CDC73
,
CASR,
and recently
GCM2
. The aim of the study was to further investigate the molecular pathogenesis in Italian FIHP kindreds.
Methods
We used whole exome sequencing (WES) in the probands of seven unrelated FIHP kindreds. We carried out a separate family-based exome analysis in a large family characterized by the co-occurrence of PHPT with multiple tumors apparently unrelated to the disease. Selected variants were also screened in 18 additional FIHP kindreds. The clinical, biochemical, and pathological characteristics of the families were also investigated.
Results
Three different variants in
GCM2
gene were found in two families, but only one (p.Tyr394Ser), already been shown to be pathogenic in vitro, segregated with the disease. Six probands carried seven heterozygous missense mutations segregating with the disease in the
FAT3, PARK2
,
HDAC4, ITPR2
and
TBCE
genes. A genetic variant in the
APC
gene co-segregating with PHPT (p.Val530Ala) was detected in a family whose affected relatives had additional tumors, including colonic polyposis.
Conclusion
We confirm the role of
GCM2
germline mutations in the pathogenesis of FIHP, although at a lower rate than in the previous WES study. Further studies are needed to establish the prevalence and the role in the predisposition to FIHP of the novel variants in additional genes. |
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ISSN: | 1720-8386 0391-4097 1720-8386 |
DOI: | 10.1007/s40618-019-01107-5 |