Recurrent Germline DLST Mutations in Individuals with Multiple Pheochromocytomas and Paragangliomas
AMERICAN JOURNAL OF HUMAN GENETICS
Authors: Remacha, Laura; Pirman, David; Mahoney, Christopher E.; Coloma, Javier; Calsina, Bruna; Curras-Freixes, Maria; Leton, Rocio; Torres-Perez, Rafael; Richter, Susan; Pita, Guillermo; Herraez, Belen; Cianchetta, Giovanni; Honrado, Emiliano; Maestre, Lorena; Urioste, Miguel; Aller, Javier; Garcia-Uriarte, Oscar; Angeles Galvez, Maria; Luque, Raul M.; Lahera, Marcos; Moreno-Rengel, Cristina; Eisenhofer, Graeme; Montero-Conde, Cristina; Rodriguez-Antona, Cristina; Llorca, Oscar; Smolen, Gromoslaw A.; Robledo, Mercedes; Cascon, Alberto
Abstract
Pheochromocytomas and paragangliomas (PPGLs) provide some of the clearest genetic evidence for the critical role of metabolism in the tumorigenesis process. Approximately 40% of PPGLs are caused by driver germline mutations in 16 known susceptibility genes, and approximately half of these genes encode members of the tricarboxylic acid (TCA) cycle. Taking as a starting point the involvement of the TCA cycle in PPGL development, we aimed to identify unreported mutations that occurred in genes involved in this key metabolic pathway and that could explain the phenotypes of additional individuals who lack mutations in known susceptibility genes. To accomplish this, we applied a targeted sequencing of 37 TCA-cycle-related genes to DNA from 104 PPGL-affected individuals with no mutations in the major known predisposing genes. We also performed omics-based analyses, TCA-related metabolite determination, and C-13(5)-glutamate labeling assays. We identified five germline variants affecting DLST in eight unrelated individuals (similar to 7%); all except one were diagnosed with multiple PPGLs. A recurrent variant, c.1121G>A (p.Gly374Glu), found in four of the eight individuals triggered accumulation of 2-hydroxyglutarate, both in tumors and in a heterologous cell-based assay designed to functionally evaluate DLST variants. p.Gly374Glu-DLST tumors exhibited loss of heterozygosity, and their methylation and expression profiles are similar to those of EPAS1-mutated PPGLs; this similarity suggests a link between DLST disruption and pseudohypoxia. Moreover, we found positive DLST immunostaining exclusively in tumors carrying TCA-cycle or EPAS1 mutations. In summary, this study reveals DLST as a PPGL-susceptibility gene and further strengthens the relevance of the TCA cycle in PPGL development.
EPAS1 p.M535T mutation in a Bulgarian family with congenital erythrocytosis
HEMATOLOGY
Authors: Alaikov, Tzvetan; Ivanova, Milena; Shivarov, Velizar
Abstract
Objectives: In the last decade the identification of germline mutations in several genes such as EPOR, VHL, EGLN1, and EPAS1, helped the definition of several different subtypes of familial (congenital) erythrocytosis. Being rare disorders these entities often remain unrecognized or misdiagnosed, which necessitates the extensive reporting of newly identified cases. Methods: We applied a genetic approach including whole exome sequencing and Sanger sequencing for the identification of the causative germline mutation in a Bulgarian family with congential erythrocytosis. Results: We identified EPAS1 (HIF2A) p.M535T heterozygous mutation carried by four members of the family over three generations. We provide also an extensive description of the clinical features of the affected family members. Discussion: EPAS1 p.M535T appears to be found in different populations as a causative variation in familial erythrocytosis. Our findings support the notion that the affected patients present with variable clinical features and disease course. Furthermore, close clinical follow-up with phlebotomies on demand and regular intake of low doses of anticoagulants seem to prevent from serious complications such as thrombembolic events and pulmonary hypertension. Conclusion: This is the first description of an entire family with EPAS1 p.M535T mutation expanding our knowledge about the clinical features of the disease.