An update on the neurological short tandem repeat expansion disorders and the emergence of long-read sequencing diagnostics

被引:117
作者
Chintalaphani, Sanjog R. [1 ,2 ]
Pineda, Sandy S. [3 ,4 ]
Deveson, Ira W. [2 ,5 ]
Kumar, Kishore R. [2 ,6 ,7 ]
机构
[1] Univ New South Wales, Sch Med, Sydney, NSW 2052, Australia
[2] Garvan Inst Med Res, Kinghorn Ctr Clin Genom, Darlinghurst, NSW 2010, Australia
[3] Garvan Inst Med Res, Garvan Weizmann Ctr Cellular Genom, Darlinghurst, NSW 2010, Australia
[4] Univ Sydney, Brain & Mind Ctr, Camperdown, NSW 2050, Australia
[5] Univ New South Wales, Fac Med, St Vincents Clin Sch, Sydney, NSW 2010, Australia
[6] Univ Sydney, Concord Repatriat Gen Hosp, Cent Clin Sch, Mol Med Lab, Concord, NSW 2137, Australia
[7] Univ Sydney, Concord Repatriat Gen Hosp, Cent Clin Sch, Neurol Dept, Concord, NSW 2137, Australia
关键词
Tandem; Repeats; Expansion; Neurological; Clinical; Genetics; Disease; Diagnosis; Long-read; Sequencing; DENTATORUBRAL-PALLIDOLUYSIAN ATROPHY; VESTIBULAR AREFLEXIA SYNDROME; LINKED MENTAL-RETARDATION; AGE-OF-ONSET; CAG-REPEAT; CEREBELLAR-ATAXIA; POLYALANINE EXPANSION; HEXANUCLEOTIDE REPEAT; TRINUCLEOTIDE REPEAT; PENTANUCLEOTIDE REPEAT;
D O I
10.1186/s40478-021-01201-x
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Background Short tandem repeat (STR) expansion disorders are an important cause of human neurological disease. They have an established role in more than 40 different phenotypes including the myotonic dystrophies, Fragile X syndrome, Huntington's disease, the hereditary cerebellar ataxias, amyotrophic lateral sclerosis and frontotemporal dementia. Main body STR expansions are difficult to detect and may explain unsolved diseases, as highlighted by recent findings including: the discovery of a biallelic intronic 'AAGGG' repeat in RFC1 as the cause of cerebellar ataxia, neuropathy, and vestibular areflexia syndrome (CANVAS); and the finding of 'CGG' repeat expansions in NOTCH2NLC as the cause of neuronal intranuclear inclusion disease and a range of clinical phenotypes. However, established laboratory techniques for diagnosis of repeat expansions (repeat-primed PCR and Southern blot) are cumbersome, low-throughput and poorly suited to parallel analysis of multiple gene regions. While next generation sequencing (NGS) has been increasingly used, established short-read NGS platforms (e.g., Illumina) are unable to genotype large and/or complex repeat expansions. Long-read sequencing platforms recently developed by Oxford Nanopore Technology and Pacific Biosciences promise to overcome these limitations to deliver enhanced diagnosis of repeat expansion disorders in a rapid and cost-effective fashion. Conclusion We anticipate that long-read sequencing will rapidly transform the detection of short tandem repeat expansion disorders for both clinical diagnosis and gene discovery.
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页数:20
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