Literature DB >> 28691344

Combined tumor genomic profiling and exome sequencing in a breast cancer family implicates ATM in tumorigenesis: A proof of principle study.

Virginie Bubien1,2, Françoise Bonnet1,2, Jennifer Dupiot-Chiron2, Emmanuelle Barouk-Simonet2, Natalie Jones1,2, Aurélien de Reynies3, Gaëtan MacGrogan1,4, Nicolas Sevenet1,2, Eric Letouzé3, Michel Longy1,2.   

Abstract

Familial breast cancers (BCs) account for 10%-20% of all diagnosed BCs, yet only 20% of such tumors arise in the context of a germline mutation in known tumor suppressor genes such as BRCA1 or BRCA2. The vast genetic heterogeneity which characterizes non BRCA1 and non BRCA2 (or BRCAx) families makes grouped studies impossible to perform. Next generation sequencing techniques, however, allow individual families to be studied to identify rare and or private mutations but the high number of genetic variants identified need to be sorted using pathogenicity or recurrence criteria. An additional sorting criterion may be represented by the identification of candidate regions defined by tumor genomic rearrangements. Indeed, comparative genomic hybridization (CGH) using single nucleotide polymorphism (SNP) arrays allows the detection of conserved ancestral haplotypes within recurrent regions of loss of heterozygosity, common to several familial tumors, which can highlight genomic loci harboring a germline mutation in cancer predisposition genes. The combination of both exome sequencing and SNP array-CGH for a series of familial BC revealed a germline ATM mutation associated with a loss of the wild-type allele in two BC from a BRCAx family. The analysis of additional breast tumors from ten BC families in which a germline ATM mutation had been identified revealed a high frequency of wild-type allele loss. This result argues strongly in favor of the involvement of ATM in these tumors as a tumor suppressor gene and confirms that germline ATM mutations are involved in a subset of familial BC.
© 2017 Wiley Periodicals, Inc.

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Year:  2017        PMID: 28691344     DOI: 10.1002/gcc.22482

Source DB:  PubMed          Journal:  Genes Chromosomes Cancer        ISSN: 1045-2257            Impact factor:   5.006


  5 in total

1.  Prevalence of disease-causing genes in Japanese patients with BRCA1/2-wildtype hereditary breast and ovarian cancer syndrome.

Authors:  Tomoko Kaneyasu; Seiichi Mori; Hideko Yamauchi; Shozo Ohsumi; Shinji Ohno; Daisuke Aoki; Shinichi Baba; Junko Kawano; Yoshio Miki; Naomichi Matsumoto; Masao Nagasaki; Reiko Yoshida; Sadako Akashi-Tanaka; Takuji Iwase; Dai Kitagawa; Kenta Masuda; Akira Hirasawa; Masami Arai; Junko Takei; Yoshimi Ide; Osamu Gotoh; Noriko Yaguchi; Mitsuyo Nishi; Keika Kaneko; Yumi Matsuyama; Megumi Okawa; Misato Suzuki; Aya Nezu; Shiro Yokoyama; Sayuri Amino; Mayuko Inuzuka; Tetsuo Noda; Seigo Nakamura
Journal:  NPJ Breast Cancer       Date:  2020-06-12

2.  Morphology and genomic hallmarks of breast tumours developed by ATM deleterious variant carriers.

Authors:  Anne-Laure Renault; Noura Mebirouk; Laetitia Fuhrmann; Guillaume Bataillon; Eve Cavaciuti; Dorothée Le Gal; Elodie Girard; Tatiana Popova; Philippe La Rosa; Juana Beauvallet; Séverine Eon-Marchais; Marie-Gabrielle Dondon; Catherine Dubois d'Enghien; Anthony Laugé; Walid Chemlali; Virginie Raynal; Martine Labbé; Ivan Bièche; Sylvain Baulande; Jacques-Olivier Bay; Pascaline Berthet; Olivier Caron; Bruno Buecher; Laurence Faivre; Marc Fresnay; Marion Gauthier-Villars; Paul Gesta; Nicolas Janin; Sophie Lejeune; Christine Maugard; Sébastien Moutton; Laurence Venat-Bouvet; Hélène Zattara; Jean-Pierre Fricker; Laurence Gladieff; Isabelle Coupier; Georgia Chenevix-Trench; Janet Hall; Anne Vincent-Salomon; Dominique Stoppa-Lyonnet; Nadine Andrieu; Fabienne Lesueur
Journal:  Breast Cancer Res       Date:  2018-04-17       Impact factor: 6.466

3.  Prevalence of disease-causing genes in Japanese patients with BRCA1/2-wildtype hereditary breast and ovarian cancer syndrome.

Authors:  Tomoko Kaneyasu; Seiichi Mori; Hideko Yamauchi; Shozo Ohsumi; Shinji Ohno; Daisuke Aoki; Shinichi Baba; Junko Kawano; Yoshio Miki; Naomichi Matsumoto; Masao Nagasaki; Reiko Yoshida; Sadako Akashi-Tanaka; Takuji Iwase; Dai Kitagawa; Kenta Masuda; Akira Hirasawa; Masami Arai; Junko Takei; Yoshimi Ide; Osamu Gotoh; Noriko Yaguchi; Mitsuyo Nishi; Keika Kaneko; Yumi Matsuyama; Megumi Okawa; Misato Suzuki; Aya Nezu; Shiro Yokoyama; Sayuri Amino; Mayuko Inuzuka; Tetsuo Noda; Seigo Nakamura
Journal:  NPJ Breast Cancer       Date:  2020-06-12

4.  Results of multigene panel testing in familial cancer cases without genetic cause demonstrated by single gene testing.

Authors:  Mev Dominguez-Valentin; Sigve Nakken; Hélène Tubeuf; Daniel Vodak; Per Olaf Ekstrøm; Anke M Nissen; Monika Morak; Elke Holinski-Feder; Arild Holth; Gabriel Capella; Ben Davidson; D Gareth Evans; Alexandra Martins; Pål Møller; Eivind Hovig
Journal:  Sci Rep       Date:  2019-12-06       Impact factor: 4.379

5.  Vasculogenic Mimicry Formation Predicts Tumor Progression in Oligodendroglioma.

Authors:  Jing Xie; Xue Kong; Wei Wang; Yuan Li; Mengyu Lin; Heng Li; Jingjing Chen; Wenchao Zhou; Jie He; Haibo Wu
Journal:  Pathol Oncol Res       Date:  2021-08-18       Impact factor: 3.201

  5 in total

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