Novel FH mutations in families with hereditary leiomyomatosis and renal cell cancer (HLRCC) and patients with isolated type 2 papillary renal cell carcinoma

Hereditary leiomyomatosis and renal cell cancer (HLRCC) is an autosomal dominant disorder predisposing humans to cutaneous and uterine leiomyomas; in 20% of affected families, type 2 papillary renal cell cancers (PRCCII) also occur with aggressive course and poor prognosis. HLRCC results from hetero...

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Published in:Journal of medical genetics Vol. 48; no. 4; p. 226
Main Authors: Gardie, Betty, Remenieras, Audrey, Kattygnarath, Darouna, Bombled, Johny, Lefèvre, Sandrine, Perrier-Trudova, Victoria, Rustin, Pierre, Barrois, Michel, Slama, Abdelhamid, Avril, Marie-Françoise, Bessis, Didier, Caron, Olivier, Caux, Frédéric, Collignon, Patrick, Coupier, Isabelle, Cremin, Carol, Dollfus, Hélène, Dugast, Catherine, Escudier, Bernard, Faivre, Laurence, Field, Michel, Gilbert-Dussardier, Brigitte, Janin, Nicolas, Leport, Yves, Leroux, Dominique, Lipsker, Dan, Malthieu, Félicia, McGilliwray, Barbara, Maugard, Christine, Méjean, Arnaud, Mortemousque, Isabelle, Plessis, Ghislaine, Poppe, Bruce, Pruvost-Balland, Christelle, Rooker, Serena, Roume, Joelle, Soufir, Nadem, Steinraths, Michelle, Tan, Min-Han, Théodore, Christine, Thomas, Luc, Vabres, Pierre, Van Glabeke, Emmanuel, Meric, Jean-Baptiste, Verkarre, Virginie, Lenoir, Gilbert, Joulin, Virginie, Deveaux, Sophie, Cusin, Veronica, Feunteun, Jean, Teh, Bin Tean, Bressac-de Paillerets, Brigitte, Richard, Stéphane
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Published: England 01-04-2011
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Abstract Hereditary leiomyomatosis and renal cell cancer (HLRCC) is an autosomal dominant disorder predisposing humans to cutaneous and uterine leiomyomas; in 20% of affected families, type 2 papillary renal cell cancers (PRCCII) also occur with aggressive course and poor prognosis. HLRCC results from heterozygous germline mutations in the tumour suppressor fumarate hydratase (FH) gene. As part of the French National Cancer Institute (INCa) 'Inherited predispositions to kidney cancer' network, sequence analysis and a functional study of FH were preformed in 56 families with clinically proven or suspected HLRCC and in 23 patients with isolated PRCCII (5 familial and 18 sporadic). The study identified 32 different germline FH mutations (15 missense, 6 frameshifts, 4 nonsense, 1 deletion/insertion, 5 splice site, and 1 complete deletion) in 40/56 (71.4%) families with proven or suspected HLRCC and in 4/23 (17.4%) probands with PRCCII alone, including 2 sporadic cases. 21 of these were novel and all were demonstrated as deleterious by significant reduction of FH enzymatic activity. In addition, 5 asymptomatic parents in 3 families were confirmed as carrying disease-causing mutations. This study identified and characterised 21 novel FH mutations and demonstrated that PRCCII can be the only one manifestation of HLRCC. Due to the incomplete penetrance of HLRCC, the authors propose to extend the FH mutation analysis to every patient with PRCCII occurring before 40 years of age or when renal tumour harbours characteristic histologic features, in order to discover previously ignored HLRCC affected families.
AbstractList Hereditary leiomyomatosis and renal cell cancer (HLRCC) is an autosomal dominant disorder predisposing humans to cutaneous and uterine leiomyomas; in 20% of affected families, type 2 papillary renal cell cancers (PRCCII) also occur with aggressive course and poor prognosis. HLRCC results from heterozygous germline mutations in the tumour suppressor fumarate hydratase (FH) gene. As part of the French National Cancer Institute (INCa) 'Inherited predispositions to kidney cancer' network, sequence analysis and a functional study of FH were preformed in 56 families with clinically proven or suspected HLRCC and in 23 patients with isolated PRCCII (5 familial and 18 sporadic). The study identified 32 different germline FH mutations (15 missense, 6 frameshifts, 4 nonsense, 1 deletion/insertion, 5 splice site, and 1 complete deletion) in 40/56 (71.4%) families with proven or suspected HLRCC and in 4/23 (17.4%) probands with PRCCII alone, including 2 sporadic cases. 21 of these were novel and all were demonstrated as deleterious by significant reduction of FH enzymatic activity. In addition, 5 asymptomatic parents in 3 families were confirmed as carrying disease-causing mutations. This study identified and characterised 21 novel FH mutations and demonstrated that PRCCII can be the only one manifestation of HLRCC. Due to the incomplete penetrance of HLRCC, the authors propose to extend the FH mutation analysis to every patient with PRCCII occurring before 40 years of age or when renal tumour harbours characteristic histologic features, in order to discover previously ignored HLRCC affected families.
Author Bombled, Johny
Lefèvre, Sandrine
Cremin, Carol
Teh, Bin Tean
Rustin, Pierre
Lenoir, Gilbert
Maugard, Christine
Poppe, Bruce
Slama, Abdelhamid
Thomas, Luc
Verkarre, Virginie
Kattygnarath, Darouna
Field, Michel
Janin, Nicolas
Remenieras, Audrey
Escudier, Bernard
Bessis, Didier
Mortemousque, Isabelle
Dugast, Catherine
Caux, Frédéric
Rooker, Serena
Caron, Olivier
Pruvost-Balland, Christelle
Théodore, Christine
Deveaux, Sophie
Meric, Jean-Baptiste
McGilliwray, Barbara
Avril, Marie-Françoise
Collignon, Patrick
Van Glabeke, Emmanuel
Steinraths, Michelle
Coupier, Isabelle
Cusin, Veronica
Leport, Yves
Vabres, Pierre
Feunteun, Jean
Plessis, Ghislaine
Richard, Stéphane
Roume, Joelle
Perrier-Trudova, Victoria
Lipsker, Dan
Bressac-de Paillerets, Brigitte
Joulin, Virginie
Soufir, Nadem
Gilbert-Dussardier, Brigitte
Gardie, Betty
Leroux, Dominique
Méjean, Arnaud
Malthieu, Félicia
Faivre, Laurence
Dollfus, Hélène
Barrois, Michel
Tan, Min-Han
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BackLink https://www.ncbi.nlm.nih.gov/pubmed/21398687$$D View this record in MEDLINE/PubMed
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CorporateAuthor French National Cancer Institute "Inherited predisposition to kidney cancer" network
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Snippet Hereditary leiomyomatosis and renal cell cancer (HLRCC) is an autosomal dominant disorder predisposing humans to cutaneous and uterine leiomyomas; in 20% of...
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StartPage 226
SubjectTerms Adult
Aged
Carcinoma, Renal Cell - genetics
Cell Line, Tumor
Codon, Nonsense
Female
Frameshift Mutation
Fumarate Hydratase - genetics
Gene Deletion
Gene Rearrangement
Genotype
Germ-Line Mutation
Humans
INDEL Mutation
Kidney Neoplasms - genetics
Leiomyomatosis - congenital
Leiomyomatosis - genetics
Male
Middle Aged
Mutation
Mutation, Missense
Neoplastic Syndromes, Hereditary
Pedigree
Skin Neoplasms
Uterine Neoplasms
Title Novel FH mutations in families with hereditary leiomyomatosis and renal cell cancer (HLRCC) and patients with isolated type 2 papillary renal cell carcinoma
URI https://www.ncbi.nlm.nih.gov/pubmed/21398687
Volume 48
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