Targeted next-generation sequencing in monogenic dyslipidemias

被引:82
作者
Hegele, Robert A.
Ban, Matthew R.
Cao, Henian
McIntyre, Adam D.
Robinson, John F.
Wang, Jian
机构
[1] Univ Western Ontario, Schulich Sch Med & Dent, Robarts Res Inst, London, ON, Canada
[2] Univ Western Ontario, Schulich Sch Med & Dent, Dept Med, London, ON, Canada
关键词
chylomicronemia; diagnostic method; DNA mutation; familial hypercholesterolemia; next-generation sequencing; whole exome sequencing; whole genome sequencing; DENSITY-LIPOPROTEIN CHOLESTEROL; FAMILIAL HYPERCHOLESTEROLEMIA; GENETIC DIAGNOSIS; MUTATIONS; CLINICIAN; VARIANTS; GUIDANCE; INSIGHTS; GENOME; SCORE;
D O I
10.1097/MOL.0000000000000163
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Purpose of review To evaluate the potential clinical translation of high-throughput next-generation sequencing (NGS) methods in diagnosis and management of dyslipidemia. Recent findings Recent NGS experiments indicate that most causative genes for monogenic dyslipidemias are already known. Thus, monogenic dyslipidemias can now be diagnosed using targeted NGS. Targeting of dyslipidemia genes can be achieved by either: designing custom reagents for a dyslipidemia-specific NGS panel; or performing genome-wide NGS and focusing on genes of interest. Advantages of the former approach are lower cost and limited potential to detect incidental pathogenic variants unrelated to dyslipidemia. However, the latter approach is more flexible because masking criteria can be altered as knowledge advances, with no need for re-design of reagents or follow-up sequencing runs. Also, the cost of genome-wide analysis is decreasing and ethical concerns can likely be mitigated. DNA-based diagnosis is already part of the clinical diagnostic algorithms for familial hypercholesterolemia. Furthermore, DNA-based diagnosis is supplanting traditional biochemical methods to diagnose chylomicronemia caused by deficiency of lipoprotein lipase or its co-factors. Summary The increasing availability and decreasing cost of clinical NGS for dyslipidemia means that its potential benefits can now be evaluated on a larger scale.
引用
收藏
页码:103 / 113
页数:11
相关论文
共 45 条
[1]   APOE p.Leu167del mutation in familial hypercholesterolemia [J].
Awan, Zuhier ;
Choi, Hong Y. ;
Stitziel, Nathan ;
Ruel, Isabelle ;
Bamimore, Mary Aderayo ;
Husa, Regina ;
Gagnon, Marie-Helene ;
Wang, Rui-Hao L. ;
Peloso, Gina M. ;
Hegele, Robert A. ;
Seidah, Nabil G. ;
Kathiresan, Sekar ;
Genest, Jacques .
ATHEROSCLEROSIS, 2013, 231 (02) :218-222
[2]   DETECTION AND CHARACTERIZATION OF THE HETEROZYGOTE STATE FOR LIPOPROTEIN-LIPASE DEFICIENCY [J].
BABIRAK, SP ;
IVERIUS, PH ;
FUJIMOTO, WY ;
BRUNZELL, JD .
ARTERIOSCLEROSIS, 1989, 9 (03) :326-334
[3]   Rare-disease genetics in the era of next-generation sequencing: discovery to translation [J].
Boycott, Kym M. ;
Vanstone, Megan R. ;
Bulman, Dennis E. ;
MacKenzie, Alex E. .
NATURE REVIEWS GENETICS, 2013, 14 (10) :681-691
[4]   Whole-exome sequencing in an extended family with myocardial infarction unmasks familial hypercholesterolemia [J].
Brnne, Ingrid ;
Reiz, Benedikt ;
Medack, Anja ;
Kleinecke, Mariana ;
Fischer, Marcus ;
Tuna, Salih ;
Hengstenberg, Christian ;
Deloukas, Panos ;
Erdmann, Jeanette ;
Schunkert, Heribert .
BMC CARDIOVASCULAR DISORDERS, 2014, 14
[5]   A Novel APOB Mutation Identified by Exome Sequencing Cosegregates With Steatosis, Liver Cancer, and Hypocholesterolemia [J].
Cefalu, Angelo B. ;
Pirruccello, James P. ;
Noto, Davide ;
Gabriel, Stacey ;
Valenti, Vincenza ;
Gupta, Namrata ;
Spina, Rossella ;
Tarugi, Patrizia ;
Kathiresan, Sekar ;
Averna, Maurizio R. .
ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY, 2013, 33 (08) :2021-2025
[6]   First FDA Authorization for Next-Generation Sequencer [J].
Collins, Francis S. ;
Hamburg, Margaret A. .
NEW ENGLAND JOURNAL OF MEDICINE, 2013, 369 (25) :2369-2371
[7]   Homozygous familial hypercholesterolaemia: new insights and guidance for clinicians to improve detection and clinical management. A position paper from the Consensus Panel on Familial Hypercholesterolaemia of the European Atherosclerosis Society [J].
Cuchel, Marina ;
Bruckert, Eric ;
Ginsberg, Henry N. ;
Raal, Frederick J. ;
Santos, Raul D. ;
Hegele, Robert A. ;
Kuivenhoven, Jan Albert ;
Nordestgaard, Borge G. ;
Descamps, Olivier S. ;
Steinhagen-Thiessen, Elisabeth ;
Tybjrg-Hansen, Anne ;
Watts, Gerald F. ;
Averna, Maurizio ;
Boileau, Catherine ;
Boren, Jan ;
Catapano, Alberico L. ;
Defesche, Joep C. ;
Hovingh, G. Kees ;
Humphries, Steve E. ;
Kovanen, Petri T. ;
Masana, Luis ;
Pajukanta, Paivi ;
Parhofer, Klaus G. ;
Ray, Kausik K. ;
Stalenhoef, Anton F. H. ;
Stroes, Erik ;
Taskinen, Marja-Riitta ;
Wiegman, Albert ;
Wiklund, Olov ;
Chapman, M. John .
EUROPEAN HEART JOURNAL, 2014, 35 (32) :2146-U100
[8]   The relationship of molecular genetic to clinical diagnosis of familial hypercholesterolemia in a Danish population [J].
Damgaard, D ;
Larsen, ML ;
Nissen, PH ;
Jensen, JA ;
Jensen, HK ;
Soerensen, VR ;
Jensen, LG ;
Faergeman, O .
ATHEROSCLEROSIS, 2005, 180 (01) :155-160
[9]  
Do R, 2015, NATURE IN PRESS
[10]   Detection of variations and identifying genomic breakpoints for large deletions in the LDLR by Ion Torrent semiconductor sequencing [J].
Faiz, Fathimath ;
Allcock, Richard J. ;
Hooper, Amanda J. ;
van Bockxmeer, Frank M. .
ATHEROSCLEROSIS, 2013, 230 (02) :249-255