Literature DB >> 23115063

Known glioma risk loci are associated with glioma with a family history of brain tumours -- a case-control gene association study.

Beatrice Melin1, Anna M Dahlin, Ulrika Andersson, Zhaoming Wang, Roger Henriksson, Göran Hallmans, Melissa L Bondy, Christoffer Johansen, Maria Feychting, Anders Ahlbom, Cari M Kitahara, Sophia S Wang, Avima M Ruder, Tania Carreón, Mary Ann Butler, Peter D Inskip, Mark Purdue, Ann W Hsing, Leah Mechanic, Elizabeth Gillanders, Meredith Yeager, Martha Linet, Stephen J Chanock, Patricia Hartge, Preetha Rajaraman.   

Abstract

Familial cancer can be used to leverage genetic association studies. Recent genome-wide association studies have reported independent associations between seven single nucleotide polymorphisms (SNPs) and risk of glioma. The aim of this study was to investigate whether glioma cases with a positive family history of brain tumours, defined as having at least one first- or second-degree relative with a history of brain tumour, are associated with known glioma risk loci. One thousand four hundred and thirty-one glioma cases and 2,868 cancer-free controls were identified from four case-control studies and two prospective cohorts from USA, Sweden and Denmark and genotyped for seven SNPs previously reported to be associated with glioma risk in case-control designed studies. Odds ratios were calculated by unconditional logistic regression. In analyses including glioma cases with a family history of brain tumours (n = 104) and control subjects free of glioma at baseline, three of seven SNPs were associated with glioma risk: rs2736100 (5p15.33, TERT), rs4977756 (9p21.3, CDKN2A-CDKN2B) and rs6010620 (20q13.33, RTEL1). After Bonferroni correction for multiple comparisons, only one marker was statistically significantly associated with glioma risk, rs6010620 (ORtrend for the minor (A) allele, 0.39; 95% CI: 0.25-0.61; Bonferroni adjusted ptrend , 1.7 × 10(-4) ). In conclusion, as previously shown for glioma regardless of family history of brain tumours, rs6010620 (RTEL1) was associated with an increased risk of glioma when restricting to cases with family history of brain tumours. These findings require confirmation in further studies with a larger number of glioma cases with a family history of brain tumours.
Copyright © 2012 UICC.

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Year:  2012        PMID: 23115063      PMCID: PMC3586297          DOI: 10.1002/ijc.27922

Source DB:  PubMed          Journal:  Int J Cancer        ISSN: 0020-7136            Impact factor:   7.396


  20 in total

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Journal:  Cancer Epidemiol Biomarkers Prev       Date:  2007-09       Impact factor: 4.254

Review 2.  Brain tumor epidemiology: consensus from the Brain Tumor Epidemiology Consortium.

Authors:  Melissa L Bondy; Michael E Scheurer; Beatrice Malmer; Jill S Barnholtz-Sloan; Faith G Davis; Dora Il'yasova; Carol Kruchko; Bridget J McCarthy; Preetha Rajaraman; Judith A Schwartzbaum; Siegal Sadetzki; Brigitte Schlehofer; Tarik Tihan; Joseph L Wiemels; Margaret Wrensch; Patricia A Buffler
Journal:  Cancer       Date:  2008-10-01       Impact factor: 6.860

3.  Distinct germ line polymorphisms underlie glioma morphologic heterogeneity.

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Journal:  Cancer Genet       Date:  2011-01

4.  Homozygosity mapping of familial glioma in Northern Sweden.

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5.  Genetic risk profiles identify different molecular etiologies for glioma.

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Authors:  A M Ruder; M A Waters; T Carreón; M A Butler; K E Davis-King; G M Calvert; P A Schulte; E M Ward; L B Connally; J Lu; D Wall; Z Zivkovich; E F Heineman; J S Mandel; R F Morton; D J Reding; K D Rosenman
Journal:  J Agric Saf Health       Date:  2006-11

7.  Cardiovascular disease and diabetes in the Northern Sweden Health and Disease Study Cohort - evaluation of risk factors and their interactions.

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8.  Genome-wide association study identifies five susceptibility loci for glioma.

Authors:  Sanjay Shete; Fay J Hosking; Lindsay B Robertson; Sara E Dobbins; Marc Sanson; Beatrice Malmer; Matthias Simon; Yannick Marie; Blandine Boisselier; Jean-Yves Delattre; Khe Hoang-Xuan; Soufiane El Hallani; Ahmed Idbaih; Diana Zelenika; Ulrika Andersson; Roger Henriksson; A Tommy Bergenheim; Maria Feychting; Stefan Lönn; Anders Ahlbom; Johannes Schramm; Michael Linnebank; Kari Hemminki; Rajiv Kumar; Sarah J Hepworth; Amy Price; Georgina Armstrong; Yanhong Liu; Xiangjun Gu; Robert Yu; Ching Lau; Minouk Schoemaker; Kenneth Muir; Anthony Swerdlow; Mark Lathrop; Melissa Bondy; Richard S Houlston
Journal:  Nat Genet       Date:  2009-07-05       Impact factor: 38.330

9.  The INTERPHONE study: design, epidemiological methods, and description of the study population.

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10.  Variants in the CDKN2B and RTEL1 regions are associated with high-grade glioma susceptibility.

Authors:  Margaret Wrensch; Robert B Jenkins; Jeffrey S Chang; Ru-Fang Yeh; Yuanyuan Xiao; Paul A Decker; Karla V Ballman; Mitchel Berger; Jan C Buckner; Susan Chang; Caterina Giannini; Chandralekha Halder; Thomas M Kollmeyer; Matthew L Kosel; Daniel H LaChance; Lucie McCoy; Brian P O'Neill; Joe Patoka; Alexander R Pico; Michael Prados; Charles Quesenberry; Terri Rice; Amanda L Rynearson; Ivan Smirnov; Tarik Tihan; Joe Wiemels; Ping Yang; John K Wiencke
Journal:  Nat Genet       Date:  2009-07-05       Impact factor: 38.330

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  13 in total

1.  Effect of CDKN2A/B rs4977756 polymorphism on glioma risk: a meta-analysis of 16 studies including 24077 participants.

Authors:  Xuchen Qi; Yingfeng Wan; Qitao Zhan; Shuxu Yang; Yirong Wang; Xiujun Cai
Journal:  Mamm Genome       Date:  2015-11-17       Impact factor: 2.957

2.  CCDC26 rs4295627 polymorphism and glioma risk: a meta-analysis.

Authors:  Tao Cui
Journal:  Int J Clin Exp Med       Date:  2015-03-15

Review 3.  The role of the RTEL1 rs2297440 polymorphism in the risk of glioma development: a meta-analysis.

Authors:  Cuiping Zhang; Yu Lu; Xiaolian Zhang; Dongmei Yang; Shuxin Shang; Denghe Liu; Kongmei Jiang; Weiqiang Huang
Journal:  Neurol Sci       Date:  2016-03-03       Impact factor: 3.307

Review 4.  DNA repair gene ERCC1 polymorphisms and glioma susceptibility among Chinese population: a meta-analysis.

Authors:  Chunming Jiang; Fang Shen; Jianmin Du; Xiaohua Wang; Jin Su; Zhanli Liu; Xianmei Huang
Journal:  Int J Clin Exp Med       Date:  2015-07-15

Review 5.  Molecular Markers in Low-Grade Glioma-Toward Tumor Reclassification.

Authors:  Adriana Olar; Erik P Sulman
Journal:  Semin Radiat Oncol       Date:  2015-02-23       Impact factor: 5.934

6.  A Comparative Study of the Molecular Characteristics of Familial Gliomas and Other Cancers.

Authors:  Jie Lu; Mark G Burnett; Max Shpak
Journal:  Cancer Genomics Proteomics       Date:  2016 11-12       Impact factor: 4.069

Review 7.  Traumatic brain injury and subsequent brain tumor development: a systematic review of the literature.

Authors:  Darsh S Shah; Akshat Sanan; Alexis A Morell; Daniel G Eichberg; Ashish H Shah; Evan Luther; Victor M Lu; Turki Elarjani; Dominic M O Higgins; Nitesh V Patel; Jonathan R Jagid; Michael E Ivan; Ricardo J Komotar
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8.  An Updated and Comprehensive Meta-Analysis of Association Between Seven Hot Loci Polymorphisms from Eight GWAS and Glioma Risk.

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Review 9.  Genetics in glioma: lessons learned from genome-wide association studies.

Authors:  Beatrice Melin; Robert Jenkins
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10.  Targeted sequencing in chromosome 17q linkage region identifies familial glioma candidates in the Gliogene Consortium.

Authors:  Ali Jalali; E Susan Amirian; Matthew N Bainbridge; Georgina N Armstrong; Yanhong Liu; Spyros Tsavachidis; Shalini N Jhangiani; Sharon E Plon; Ching C Lau; Elizabeth B Claus; Jill S Barnholtz-Sloan; Dora Il'yasova; Joellen Schildkraut; Francis Ali-Osman; Siegal Sadetzki; Christoffer Johansen; Richard S Houlston; Robert B Jenkins; Daniel Lachance; Sara H Olson; Jonine L Bernstein; Ryan T Merrell; Margaret R Wrensch; Faith G Davis; Rose Lai; Sanjay Shete; Kenneth Aldape; Christopher I Amos; Donna M Muzny; Richard A Gibbs; Beatrice S Melin; Melissa L Bondy
Journal:  Sci Rep       Date:  2015-02-05       Impact factor: 4.379

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