Whole genome bisulfite sequencing of cell-free DNA and its cellular contributors uncovers placenta hypomethylated domains

被引:54
作者
Jensen, Taylor J. [1 ]
Kim, Sung K. [1 ]
Zhu, Zhanyang [1 ]
Chin, Christine [1 ]
Gebhard, Claudia [1 ]
Lu, Tim [1 ]
Deciu, Cosmin [1 ]
van den Boom, Dirk [2 ]
Ehrich, Mathias [2 ]
机构
[1] Sequenom Labs, San Diego, CA 92121 USA
[2] Sequenom Inc, San Diego, CA 92121 USA
关键词
NONINVASIVE-PRENATAL-DIAGNOSIS; MATERNAL PLASMA DNA; CANCER-CELLS; FETAL DNA; METHYLATION; TRISOMY-21; ORIGIN; ANEUPLOIDIES; EXPRESSION; MARKERS;
D O I
10.1186/s13059-015-0645-x
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Background: Circulating cell-free fetal DNA has enabled non-invasive prenatal fetal aneuploidy testing without direct discrimination of the maternal and fetal DNA. Testing may be improved by specifically enriching the sample material for fetal DNA. DNA methylation may allow for such a separation of DNA; however, this depends on knowledge of the methylomes of circulating cell-free DNA and its cellular contributors. Results: We perform whole genome bisulfite sequencing on a set of unmatched samples including circulating cell-free DNA from non-pregnant and pregnant female donors and genomic DNA from maternal buffy coat and placenta samples. We find CpG cytosines within longer fragments are more likely to be methylated. Comparison of the methylomes of placenta and non-pregnant circulating cell-free DNA reveal many of the 51,259 identified differentially methylated regions are located in domains exhibiting consistent placenta hypomethylation across millions of consecutive bases. We find these placenta hypomethylated domains are consistently located within regions exhibiting low CpG and gene density. Differentially methylated regions identified when comparing placenta to non-pregnant circulating cell-free DNA are recapitulated in pregnant circulating cell-free DNA, confirming the ability to detect differential methylation in circulating cell-free DNA mixtures. Conclusions: We generate methylome maps for four sample types at single-base resolution, identify a link between DNA methylation and fragment length in circulating cell-free DNA, identify differentially methylated regions between sample groups, and uncover the presence of megabase-size placenta hypomethylated domains.
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页数:11
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[1]   Free fetal DNA in maternal plasma in anembryonic pregnancies: confirmation that the origin is the trophoblast [J].
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Maddocks, D. ;
Jones, M. ;
Hadi, M. Abdel ;
Abdel-Fattah, S. ;
Avent, N. ;
Soothill, P. W. .
PRENATAL DIAGNOSIS, 2007, 27 (05) :415-418
[2]   Regions of focal DNA hypermethylation and long-range hypomethylation in colorectal cancer coincide with nuclear lamina-associated domains [J].
Berman, Benjamin P. ;
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Aman, Joseph F. ;
Hinoue, Toshinori ;
Ramjan, Zachary ;
Liu, Yaping ;
Noushmehr, Houtan ;
Lange, Christopher P. E. ;
van Dijk, Cornelis M. ;
Tollenaar, Rob A. E. M. ;
Van den Berg, David ;
Laird, Peter W. .
NATURE GENETICS, 2012, 44 (01) :40-U62
[3]   Linking DNA methylation and histone modification: patterns and paradigms [J].
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[4]   Hypermethylated RASSF1A in maternal plasma:: A universal fetal DNA marker that improves the reliability of noninvasive prenatal diagnosis [J].
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Ding, Chunming ;
Gerovassili, Ageliki ;
Yeung, Sze W. ;
Chiu, Rossa W. K. ;
Leung, Tse N. ;
Lau, Tze K. ;
Chim, Stephen S. C. ;
Chung, Grace T. Y. ;
Nicolaides, Kypros H. ;
Lo, Y. M. Dennis .
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[5]   Detection of the placental epigenetic signature of the maspin gene in maternal plasma [J].
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Chiu, RWK ;
Lau, TK ;
Leung, TN ;
Chan, LYS ;
Oudejans, CBM ;
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Lo, YMD .
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[6]   Systematic search for placental DNA-methylation markers on chromosome 21: Toward a maternal plasma-based epigenetic test for fetal trisomy 21 [J].
Chim, Stephen S. C. ;
Jin, Shengnan ;
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Lun, Fiona M. F. ;
Lee, Wing S. ;
Chan, Lisa Y. S. ;
Jin, Yongjie ;
Yang, Ningning ;
Tong, Yu K. ;
Leung, Tak Y. ;
Lau, Tze K. ;
Ding, Chunming ;
Chiu, Rossa W. K. ;
Lo, Y. M. Dennis .
CLINICAL CHEMISTRY, 2008, 54 (03) :500-511
[7]   Non-invasive prenatal assessment of trisomy 21 by multiplexed maternal plasma DNA sequencing: large scale validity study [J].
Chiu, Rossa W. K. ;
Akolekar, Ranjit ;
Zheng, Yama W. L. ;
Leung, Tak Y. ;
Sun, Hao ;
Chan, K. C. Allen ;
Lun, Fiona M. F. ;
Go, Attie T. J. I. ;
Lau, Elizabeth T. ;
To, William W. K. ;
Leung, Wing C. ;
Tang, Rebecca Y. K. ;
Au-Yeung, Sidney K. C. ;
Lam, Helena ;
Kung, Yu Y. ;
Zhang, Xiuqing ;
van Vugt, John M. G. ;
Minekawa, Ryoko ;
Tang, Mary H. Y. ;
Wang, Jun ;
Oudejans, Cees B. M. ;
Lau, Tze K. ;
Nicolaides, Kypros H. ;
Lo, Y. M. Dennis .
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[8]   A microarray-based approach for the identification of epigenetic biomarkers for the noninvasive diagnosis of fetal disease [J].
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Burke, Brian ;
Bunce, Kimberly ;
Surti, Urvashi ;
Hogge, W. Allen ;
Peters, David G. .
PRENATAL DIAGNOSIS, 2009, 29 (11) :1020-1030
[9]   Sequential DNA methylation of the Nanog and Oct-4 upstream regions in human NT2 cells during neuronal differentiation [J].
Deb-Rinker, P ;
Ly, D ;
Jezierski, A ;
Sikorska, M ;
Walker, PR .
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[10]   Differential DNA Methylation as a Tool for Noninvasive Prenatal Diagnosis (NIPD) of X Chromosome Aneuploidies [J].
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Mastrovito, Paola ;
Campanile, Ciro ;
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Hulten, Maj A. ;
Patsalis, Philippos C. ;
Carter, Nigel P. ;
D'Esposito, Maurizio .
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