{"month":"07","year":"2017","publication_identifier":{"issn":["2324-9269"]},"title":"Whole exome sequencing and DNA methylation analysis in a clinical amyotrophic lateral sclerosis cohort","quality_controlled":"1","main_file_link":[{"url":"https://doi.org/10.1002/mgg3.302","open_access":"1"}],"intvolume":" 5","citation":{"apa":"Garton, F. C., Benyamin, B., Zhao, Q., Liu, Z., Gratten, J., Henders, A. K., … McCombe, P. A. (2017). Whole exome sequencing and DNA methylation analysis in a clinical amyotrophic lateral sclerosis cohort. Molecular Genetics & Genomic Medicine. Wiley. https://doi.org/10.1002/mgg3.302","ista":"Garton FC, Benyamin B, Zhao Q, Liu Z, Gratten J, Henders AK, Zhang Z-H, Edson J, Furlong S, Morgan S, Heggie S, Thorpe K, Pfluger C, Mather KA, Sachdev PS, McRae AF, Robinson MR, Shah S, Visscher PM, Mangelsdorf M, Henderson RD, Wray NR, McCombe PA. 2017. Whole exome sequencing and DNA methylation analysis in a clinical amyotrophic lateral sclerosis cohort. Molecular Genetics & Genomic Medicine. 5(4), 418–428.","chicago":"Garton, Fleur C., Beben Benyamin, Qiongyi Zhao, Zhijun Liu, Jacob Gratten, Anjali K. Henders, Zong-Hong Zhang, et al. “Whole Exome Sequencing and DNA Methylation Analysis in a Clinical Amyotrophic Lateral Sclerosis Cohort.” Molecular Genetics & Genomic Medicine. Wiley, 2017. https://doi.org/10.1002/mgg3.302.","ieee":"F. C. Garton et al., “Whole exome sequencing and DNA methylation analysis in a clinical amyotrophic lateral sclerosis cohort,” Molecular Genetics & Genomic Medicine, vol. 5, no. 4. Wiley, pp. 418–428, 2017.","ama":"Garton FC, Benyamin B, Zhao Q, et al. Whole exome sequencing and DNA methylation analysis in a clinical amyotrophic lateral sclerosis cohort. Molecular Genetics & Genomic Medicine. 2017;5(4):418-428. doi:10.1002/mgg3.302","mla":"Garton, Fleur C., et al. “Whole Exome Sequencing and DNA Methylation Analysis in a Clinical Amyotrophic Lateral Sclerosis Cohort.” Molecular Genetics & Genomic Medicine, vol. 5, no. 4, Wiley, 2017, pp. 418–28, doi:10.1002/mgg3.302.","short":"F.C. Garton, B. Benyamin, Q. Zhao, Z. Liu, J. Gratten, A.K. Henders, Z.-H. Zhang, J. Edson, S. Furlong, S. Morgan, S. Heggie, K. Thorpe, C. Pfluger, K.A. Mather, P.S. Sachdev, A.F. McRae, M.R. Robinson, S. Shah, P.M. Visscher, M. Mangelsdorf, R.D. Henderson, N.R. Wray, P.A. McCombe, Molecular Genetics & Genomic Medicine 5 (2017) 418–428."},"extern":"1","date_published":"2017-07-01T00:00:00Z","page":"418-428","doi":"10.1002/mgg3.302","type":"journal_article","article_type":"original","issue":"4","status":"public","author":[{"full_name":"Garton, Fleur C.","first_name":"Fleur C.","last_name":"Garton"},{"full_name":"Benyamin, Beben","first_name":"Beben","last_name":"Benyamin"},{"full_name":"Zhao, Qiongyi","last_name":"Zhao","first_name":"Qiongyi"},{"first_name":"Zhijun","last_name":"Liu","full_name":"Liu, Zhijun"},{"full_name":"Gratten, Jacob","first_name":"Jacob","last_name":"Gratten"},{"full_name":"Henders, Anjali K.","last_name":"Henders","first_name":"Anjali K."},{"last_name":"Zhang","first_name":"Zong-Hong","full_name":"Zhang, Zong-Hong"},{"last_name":"Edson","first_name":"Janette","full_name":"Edson, Janette"},{"full_name":"Furlong, Sarah","last_name":"Furlong","first_name":"Sarah"},{"full_name":"Morgan, Sarah","last_name":"Morgan","first_name":"Sarah"},{"first_name":"Susan","last_name":"Heggie","full_name":"Heggie, Susan"},{"last_name":"Thorpe","first_name":"Kathryn","full_name":"Thorpe, Kathryn"},{"full_name":"Pfluger, Casey","last_name":"Pfluger","first_name":"Casey"},{"full_name":"Mather, Karen A.","first_name":"Karen A.","last_name":"Mather"},{"first_name":"Perminder S.","last_name":"Sachdev","full_name":"Sachdev, Perminder S."},{"full_name":"McRae, Allan F.","first_name":"Allan F.","last_name":"McRae"},{"full_name":"Robinson, Matthew Richard","id":"E5D42276-F5DA-11E9-8E24-6303E6697425","first_name":"Matthew Richard","orcid":"0000-0001-8982-8813","last_name":"Robinson"},{"full_name":"Shah, Sonia","last_name":"Shah","first_name":"Sonia"},{"first_name":"Peter M.","last_name":"Visscher","full_name":"Visscher, Peter M."},{"last_name":"Mangelsdorf","first_name":"Marie","full_name":"Mangelsdorf, Marie"},{"full_name":"Henderson, Robert D.","first_name":"Robert D.","last_name":"Henderson"},{"full_name":"Wray, Naomi R.","last_name":"Wray","first_name":"Naomi R."},{"full_name":"McCombe, Pamela A.","first_name":"Pamela A.","last_name":"McCombe"}],"oa_version":"Published Version","date_updated":"2021-01-12T08:15:10Z","user_id":"2DF688A6-F248-11E8-B48F-1D18A9856A87","article_processing_charge":"No","publisher":"Wiley","day":"01","_id":"7733","oa":1,"publication_status":"published","publication":"Molecular Genetics & Genomic Medicine","language":[{"iso":"eng"}],"date_created":"2020-04-30T10:48:25Z","volume":5,"abstract":[{"text":"Sections\r\nPDFPDF\r\nTools\r\nShare\r\nAbstract\r\nBackground: Gene discovery has provided remarkable biological insights into amyotrophic lateral sclerosis (ALS). One challenge for clinical application of genetic testing is critical evaluation of the significance of reported variants.\r\nMethods: We use whole exome sequencing (WES) to develop a clinically relevant approach to identify a subset of ALS patients harboring likely pathogenic mutations. In parallel, we assess if DNA methylation can be used to screen for pathogenicity of novel variants since a methylation signature has been shown to associate with the pathogenic C9orf72 expansion, but has not been explored for other ALS mutations. Australian patients identified with ALS‐relevant variants were cross‐checked with population databases and case reports to critically assess whether they were “likely causal,” “uncertain significance,” or “unlikely causal.”\r\nResults: Published ALS variants were identified in >10% of patients; however, in only 3% of patients (4/120) could these be confidently considered pathogenic (in SOD1 and TARDBP). We found no evidence for a differential DNA methylation signature in these mutation carriers.\r\nConclusions: The use of WES in a typical ALS clinic demonstrates a critical approach to variant assessment with the capability to combine cohorts to enhance the largely unknown genetic basis of ALS.","lang":"eng"}]}