Combining Highly Multiplexed PCR with Semiconductor-Based Sequencing for Rapid Cancer Genotyping

被引:94
作者
Beadling, Carol [1 ,2 ]
Neff, Tanaya L. [1 ,2 ]
Heinrich, Michael C. [1 ,2 ,3 ]
Rhodes, Katherine [4 ]
Thornton, Michael [5 ]
Leamon, John [6 ]
Andersen, Mark [4 ]
Corless, Christopher L. [1 ,2 ]
机构
[1] Oregon Hlth & Sci Univ, Knight Canc Inst, Portland, OR 97239 USA
[2] Oregon Hlth & Sci Univ, Dept Pathol, Portland, OR 97239 USA
[3] Portland VA Med Centert, Portland, OR USA
[4] Ion Torrent Life Technol, Carlsbad, CA USA
[5] Ion Torrent Life Technol, Foster City, CA USA
[6] Ion Torrent Life Technol, Guilford, CT USA
关键词
POLYMERASE-CHAIN-REACTION; CLINICAL TUMOR SAMPLES; COPY-NUMBER; MUTATIONS; VARIANTS; THERAPY; TISSUES;
D O I
10.1016/j.jmoldx.2012.09.003
中图分类号
R36 [病理学];
学科分类号
100104 ;
摘要
There is growing demand for routine identification of actionable mutations in clinical cancer specimens. Genotyping platforms must provide rapid turnaround times and work effectively with limited amounts of formalin-fixed, paraffin-embedded (FFPE) tissue specimens that often yield poor quality DNA. We describe semiconductor-based sequencing of DNA from FFPE specimens using a single-tube, multiplexed panel of 190 amplicons targeting 46 cancer genes. With just 10 ng of input DNA, average read depths of 2000x can be obtained in 48 hours, with >95% of the reads on target. A validation set of 45 FFPE tumor specimens containing 53 point mutations previously identified with a mass spectrometry-based genotyping platform, along with 19 indels ranging from 4 to 63 bp, was used to evaluate assay performance. With a mutant allele ratio cutoff of 8%, we were able to achieve 100% sensitivity (95% CI = 97.3% to 100.0%) and 95.1% specificity (95% CI = 91.8% to 98.0%) of point mutation detection. All indels were visible by manual inspection of aligned reads; 6/9 indels <= 12 bp long were detected by the variant caller software either exactly or as mismatched nucleotides within the indel region. The rapid turnaround time and Low input DNA requirements make the multiplex PCR and semiconductor-based sequencing approach a viable option for mutation detection in a clinical Laboratory. (J Mol Diagn 2013, 15: 171-175; http://dx.doi.org/10.1016/j.jmoldx.2012.09.003)
引用
收藏
页码:171 / 176
页数:6
相关论文
共 20 条
[1]   A method and server for predicting damaging missense mutations [J].
Adzhubei, Ivan A. ;
Schmidt, Steffen ;
Peshkin, Leonid ;
Ramensky, Vasily E. ;
Gerasimova, Anna ;
Bork, Peer ;
Kondrashov, Alexey S. ;
Sunyaev, Shamil R. .
NATURE METHODS, 2010, 7 (04) :248-249
[2]   Multiplex Mutation Screening by Mass Spectrometry Evaluation of 820 Cases from a Personalized Cancer Medicine Registry [J].
Beadling, Carol ;
Heinrich, Michael C. ;
Warrick, Andrea ;
Forbes, Erin M. ;
Nelson, Dylan ;
Justusson, Emily ;
Levine, Judith ;
Neff, Tanaya L. ;
Patterson, Janice ;
Presnell, Ajia ;
McKinley, Arin ;
Winter, Laura J. ;
Dewey, Christie ;
Harlow, Amy ;
Barney, Oscar ;
Druker, Brian J. ;
Schuff, Kathryn G. ;
Corless, Christopher L. .
JOURNAL OF MOLECULAR DIAGNOSTICS, 2011, 13 (05) :504-513
[3]   Translation of the Philadelphia chromosome into therapy for CML [J].
Druker, Brian J. .
BLOOD, 2008, 112 (13) :4808-4817
[4]  
Elliott Aaron M, 2012, J Biomol Tech, V23, P24, DOI 10.7171/jbt.12-2301-003
[5]   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
[6]   Targeted polymerase chain reaction-based enrichment and next generation sequencing for diagnostic testing of congenital disorders of glycosylation [J].
Jones, Melanie A. ;
Bhide, Shruti ;
Chin, Ephrem ;
Ng, Bobby G. ;
Rhodenizer, Devin ;
Zhang, Victor W. ;
Sun, Jessica J. ;
Tanner, Alice ;
Freeze, Hudson H. ;
Hegde, Madhuri R. .
GENETICS IN MEDICINE, 2011, 13 (11) :921-932
[7]   Targeted high throughput sequencing in clinical cancer Settings: formaldehyde fixed-paraffin embedded (FFPE) tumor tissues, input amount and tumor heterogeneity [J].
Kerick, Martin ;
Isau, Melanie ;
Timmermann, Bernd ;
Sueltmann, Holger ;
Herwig, Ralf ;
Krobitsch, Sylvia ;
Schaefer, Georg ;
Verdorfer, Irmgard ;
Bartsch, Georg ;
Klocker, Helmut ;
Lehrach, Hans ;
Schweiger, Michal R. .
BMC MEDICAL GENOMICS, 2011, 4
[8]   High-Throughput Quantitative Polymerase Chain Reaction in Picoliter Droplets [J].
Kiss, Margaret Macris ;
Ortoleva-Donnelly, Lori ;
Beer, N. Reginald ;
Warner, Jason ;
Bailey, Christopher G. ;
Colston, Bill W. ;
Rothberg, Jonathon M. ;
Link, Darren R. ;
Leamon, John H. .
ANALYTICAL CHEMISTRY, 2008, 80 (23) :8975-8981
[9]   Predicting the effects of coding non-synonymous variants on protein function using the SIFT algorithm [J].
Kumar, Prateek ;
Henikoff, Steven ;
Ng, Pauline C. .
NATURE PROTOCOLS, 2009, 4 (07) :1073-1082
[10]   Targeted next-generation sequencing of a cancer transcriptome enhances detection of sequence variants and novel fusion transcripts [J].
Levin, Joshua Z. ;
Berger, Michael F. ;
Adiconis, Xian ;
Rogov, Peter ;
Melnikov, Alexandre ;
Fennell, Timothy ;
Nusbaum, Chad ;
Garraway, Levi A. ;
Gnirke, Andreas .
GENOME BIOLOGY, 2009, 10 (10)