Massively parallel sequencing, aCGH, and RNA-Seq technologies provide a comprehensive molecular diagnosis of Fanconi anemia

被引:73
作者
Chandrasekharappa, Settara C. [1 ]
Lach, Francis P. [2 ]
Kimble, Danielle C. [1 ]
Kamat, Aparna [1 ]
Teer, Jamie K. [3 ]
Donovan, Frank X. [1 ]
Flynn, Elizabeth [1 ]
Sen, Shurjo K. [3 ]
Thongthip, Supawat [2 ]
Sanborn, Erica [2 ]
Smogorzewska, Agata [2 ]
Auerbach, Arleen D. [4 ]
Ostrander, Elaine A. [1 ]
机构
[1] NHGRI, Canc Genet Branch, NIH, Bethesda, MD 20892 USA
[2] Rockefeller Univ, Lab Genome Maintenance, New York, NY 10065 USA
[3] NHGRI, Genet Dis Res Branch, NIH, Bethesda, MD 20892 USA
[4] Rockefeller Univ, Human Genet & Hematol Program, New York, NY 10065 USA
[5] NHGRI, NIH, Intramural Sequencing Ctr, Bethesda, MD 20892 USA
基金
美国国家卫生研究院;
关键词
SELECTION; IDENTIFICATION; MUTATIONS; CAPTURE; GENE;
D O I
10.1182/blood-2012-12-474585
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Current methods for detecting mutations in Fanconi anemia (FA)-suspected patients are inefficient and often miss mutations. We have applied recent advances in DNA sequencing and genomic capture to the diagnosis of FA. Specifically, we used custom molecular inversion probes or TruSeq-enrichment oligos to capture and sequence FA and related genes, including introns, from 27 samples from the International Fanconi Anemia Registry at The Rockefeller University. DNA sequencing was complemented with custom array comparative genomic hybridization (aCGH) and RNA sequencing (RNA-seq) analysis. aCGH identified deletions/duplications in 4 different FA genes. RNA-seq analysis revealed lack of allele specific expression associated with a deletion and splicing defects caused by missense, synonymous, and deep-in-intron variants. The combination of TruSeq-targeted capture, aCGH, and RNA-seq enabled us to identify the complementation group and biallelic germline mutations in all 27 families: FANCA (7), FANCB (3), FANCC (3), FANCD1 (1), FANCD2 (3), FANCF (2), FANCG (2), FANCI (1), FANCJ (2), and FANCL (3). FANCC mutations are often the cause of FA in patients of Ashkenazi Jewish (AJ) ancestry, and we identified 2 novel FANCC mutations in 2 patients of AJ ancestry. We describe here a strategy for efficient molecular diagnosis of FA.
引用
收藏
页码:E138 / E148
页数:11
相关论文
共 23 条
[1]   Direct selection of human genomic loci by microarray hybridization [J].
Albert, Thomas J. ;
Molla, Michael N. ;
Muzny, Donna M. ;
Nazareth, Lynne ;
Wheeler, David ;
Song, Xingzhi ;
Richmond, Todd A. ;
Middle, Chris M. ;
Rodesch, Matthew J. ;
Packard, Charles J. ;
Weinstock, George M. ;
Gibbs, Richard A. .
NATURE METHODS, 2007, 4 (11) :903-905
[2]   Identification and Characterization of Mutations in FANCL Gene: a Second Case of Fanconi Anemia Belonging to FA-L Complementation Group [J].
Ali, Abdullah Mahmood ;
Kirby, Michelle ;
Jansen, Michael ;
Lach, Francis P. ;
Schulte, Jennifer ;
Singh, Thiyam Ramsing ;
Batish, Sat D. ;
Auerbach, Arleen D. ;
Williams, David A. ;
Meetei, Amom Ruhikanta .
HUMAN MUTATION, 2009, 30 (07) :E761-E770
[3]   Genetic subtyping of Fanconi anemia by comprehensive mutation screening [J].
Ameziane, Najim ;
Errami, Abdellatif ;
Leveille, France ;
Fontaine, Chantal ;
de Vries, Yne ;
van Spaendonk, Rosalina M. L. ;
de Winter, Johan R. ;
Pals, Gerard ;
Joenje, Hans .
HUMAN MUTATION, 2008, 29 (01) :159-166
[4]   Fanconi anemia and its diagnosis [J].
Auerbach, Arleen D. .
MUTATION RESEARCH-FUNDAMENTAL AND MOLECULAR MECHANISMS OF MUTAGENESIS, 2009, 668 (1-2) :4-10
[5]   Whole exome capture in solution with 3 Gbp of data [J].
Bainbridge, Matthew N. ;
Wang, Min ;
Burgess, Daniel L. ;
Kovar, Christie ;
Rodesch, Matthew J. ;
D'Ascenzo, Mark ;
Kitzman, Jacob ;
Wu, Yuan-Qing ;
Newsham, Irene ;
Richmond, Todd A. ;
Jeddeloh, Jeffrey A. ;
Muzny, Donna ;
Albert, Thomas J. ;
Gibbs, Richard A. .
GENOME BIOLOGY, 2010, 11 (06)
[6]  
Birkeland AC, 2011, ARCH OTOLARYNGOL, V137, P930, DOI 10.1001/archoto.2011.154
[7]   A rapid method for retrovirus-mediated identification of complementation groups in Fanconi anemia patients [J].
Chandra, S ;
Levran, O ;
Jurickova, I ;
Maas, C ;
Kapur, R ;
Schindler, D ;
Henry, R ;
Milton, K ;
Batish, SD ;
Cancelas, JA ;
Hanenberg, H ;
Auerbach, AD ;
Williams, DA .
MOLECULAR THERAPY, 2005, 12 (05) :976-984
[8]   The structure of the catalytic subunit FANCL of the Fanconi anemia core complex [J].
Cole, Ambrose R. ;
Lewis, Laurence P. C. ;
Walden, Helen .
NATURE STRUCTURAL & MOLECULAR BIOLOGY, 2010, 17 (03) :294-U54
[9]   Solution hybrid selection with ultra-long oligonucleotides for massively parallel targeted sequencing [J].
Gnirke, Andreas ;
Melnikov, Alexandre ;
Maguire, Jared ;
Rogov, Peter ;
LeProust, Emily M. ;
Brockman, William ;
Fennell, Timothy ;
Giannoukos, Georgia ;
Fisher, Sheila ;
Russ, Carsten ;
Gabriel, Stacey ;
Jaffe, David B. ;
Lander, Eric S. ;
Nusbaum, Chad .
NATURE BIOTECHNOLOGY, 2009, 27 (02) :182-189
[10]   Genome-wide in situ exon capture for selective resequencing [J].
Hodges, Emily ;
Xuan, Zhenyu ;
Balija, Vivekanand ;
Kramer, Melissa ;
Molla, Michael N. ;
Smith, Steven W. ;
Middle, Christina M. ;
Rodesch, Matthew J. ;
Albert, Thomas J. ;
Hannon, Gregory J. ;
McCombie, W. Richard .
NATURE GENETICS, 2007, 39 (12) :1522-1527